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    • Quantitative Proteomics New!
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Novogene
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  • Genomics
    • Human Whole Genome Sequencing
    • Whole Exome Sequencing
    • Plant and Animal Whole Genome Sequencing
    • Plant and Animal De Novo Sequencing
    • Microbial Whole Genome Sequencing
    • Microbial De Novo Sequencing

    Metagenomics

    • Shotgun Metagenomics Sequencing
    • Amplicon Sequencing

    Transcriptomics

    • mRNA Sequencing
    • Swift & Express mRNA Sequencing New!
    • Full-Length Transcriptome Sequencing
    • Prokaryotic RNA Sequencing
    • Metatranscriptome Sequencing
    • Total RNA Sequencing
    • Small RNA Sequencing (sRNA‑seq)
    • Whole Transcriptome Sequencing

    Single Cell & Spatial Omics

    • 10x Single Cell Gene Expression
    • Illumina PIP-seq Single Cell 3’ RNA Sequencing New!
    • Spatial Transcriptomics Sequencing New!

    Epigenomics

    • Whole Genome Bisulfite Sequencing (WGBS)
    • Enzymatic Methylation Sequencing
    • Directed Methylation Sequencing (DM-Seq) New!
    • RNA Immunoprecipitation Sequencing (RIP-seq)
    • Chromatin Immunoprecipitation Sequencing (ChIP-seq)
    • Cleavage Under Targets & Tagmentation (CUT&Tag) New!
    • Assay for Transposase-Accessible Chromatin with Sequencing (ATAC-seq)
    • Reduced Representation Bisulfite Sequencing (RRBS)

    Proteomics

    • Quantitative Proteomics New!
    • PTM Proteomics New!
    • Olink Proteomics New!

    Metabolomics

    • Untargeted Metabolomics

    Premade Library

    • Sequencing Only on Illumina Sequencer
    • Sequencing Only on Ultima Sequencer
  • PromotionsPromotions
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    • Automated Delivery Platform (Falcon)
    • Bioinformatics Analysis Tool (NovoMagic)
    • Customer Service System (CSS)
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    • Brochure
    • Cancer Research
    • Immuno-oncology
    • Agrigenomics
    • Environment
    • Food Science
    • Human Microbiome
    • Plant and Animal Microbiome
    • Drug Discovery and Development
    • Rare and Complex Diseases
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    • News & Events
    • Careers
  • Contact UsContact Us
    • mRNA Sequencing
    • Illumina Lane Sequencing

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Contact UsContact Us menu

Service SupportService Support menu

Services
mRNA SequencingSwift & Express mRNA SequencingTotal RNA SequencingHuman Whole Genome SequencingWhole Exome Sequencing10x Single Cell Gene ExpressionIllumina PIP-seq Single Cell 3’ RNA SequencingSpatial Transcriptomics SequencingWhole Genome Bisulfite Sequencing (WGBS)Quantitative ProteomicsUntargeted MetabolomicsShotgun Metagenomics SequencingMetatranscriptome SequencingSequencing Only on Illumina SequencerSequencing Only on Ultima SequencerFull-Length Transcriptome SequencingChromatin Immunoprecipitation Sequencing (ChIP-seq)
Company
About UsOur LocationsNews & EventsCareers
Contact Us
Contact Us
Service Support
Automated Delivery Platform (Falcon)Bioinformatics Analysis Tool (NovoMagic)Customer Service System (CSS)
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Copyright © 2026 Novogene Corporation Inc. All rights reserved. For Research Use Only.
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Quantitative Proteomics

Quantitative profiling of protein abundance to reveal differential expression and support studies of biological processes and disease mechanisms.
OverviewOverview
BenefitsBenefits
ApplicationsApplications
SpecificationsSpecifications
ResourcesResources

Proteomics reveals functional biology by directly quantifying proteins, enabling deeper insights into disease mechanisms

and biomarker discovery beyond genomic predictions.


Leveraging library-free DIA on the Thermo Orbitrap Astral platform, Novogene delivers next-generation quantitative proteomics with superior data completeness, depth, and reproducibility—without missing values or DDA libraries.


Choose Rapid DIA for high-throughput studies or Deep DIA for comprehensive proteome coverage, both designed to accelerate confident biological discovery.

Why Choose Novogene for Your Proteomics Needs?

End-to-End WorkflowEnd-to-End Workflow
End-to-End Workflow

From sample preparation to LC-MS/MS analysis and expert data interpretation, we deliver a fully integrated proteomics solution.

End-to-End Workflow
End-to-End Workflow

From sample preparation to LC-MS/MS analysis and expert data interpretation, we deliver a fully integrated proteomics solution.

Scalable High-Throughput PerformanceScalable High-Throughput Performance
Scalable High-Throughput Performance

Our automated platform supports large cohort studies, processing up to 180 samples per day while identifying over 8,000 proteins.

Scalable High-Throughput Performance
Scalable High-Throughput Performance

Our automated platform supports large cohort studies, processing up to 180 samples per day while identifying over 8,000 proteins.

Flexible Study DesignFlexible Study Design
Flexible Study Design

Detection depth and acquisition time can be tailored to match your specific research objectives.

Flexible Study Design
Flexible Study Design

Detection depth and acquisition time can be tailored to match your specific research objectives.

Seamless Multi-Omics Integration Seamless Multi-Omics Integration
Seamless Multi-Omics Integration

Easily connect proteomics with genomics, transcriptomics, and metabolomics for deeper, systems-level insights.

Seamless Multi-Omics Integration
Seamless Multi-Omics Integration

Easily connect proteomics with genomics, transcriptomics, and metabolomics for deeper, systems-level insights.

Proven Experience at ScaleProven Experience at Scale
Proven Experience at Scale

With 200,000+ samples processed across 250+ species and 300+ sample types, our expertise translates into reliable results.

Proven Experience at Scale
Proven Experience at Scale

With 200,000+ samples processed across 250+ species and 300+ sample types, our expertise translates into reliable results.

Advanced Platform Advanced Platform
Advanced Platform

Powered by the Thermo Orbitrap Astral platform, our quantitative proteomics delivers high resolution, ultra sensitivity, and exceptional throughput.

Advanced Platform
Advanced Platform

Powered by the Thermo Orbitrap Astral platform, our quantitative proteomics delivers high resolution, ultra sensitivity, and exceptional throughput.

Why Choose Novogene for Your Proteomics Needs?

End-to-End WorkflowEnd-to-End Workflow
End-to-End Workflow

From sample preparation to LC-MS/MS analysis and expert data interpretation, we deliver a fully integrated proteomics solution.

End-to-End Workflow
End-to-End Workflow

From sample preparation to LC-MS/MS analysis and expert data interpretation, we deliver a fully integrated proteomics solution.

Scalable High-Throughput PerformanceScalable High-Throughput Performance
Scalable High-Throughput Performance

Our automated platform supports large cohort studies, processing up to 180 samples per day while identifying over 8,000 proteins.

Scalable High-Throughput Performance
Scalable High-Throughput Performance

Our automated platform supports large cohort studies, processing up to 180 samples per day while identifying over 8,000 proteins.

Flexible Study DesignFlexible Study Design
Flexible Study Design

Detection depth and acquisition time can be tailored to match your specific research objectives.

Flexible Study Design
Flexible Study Design

Detection depth and acquisition time can be tailored to match your specific research objectives.

Seamless Multi-Omics Integration Seamless Multi-Omics Integration
Seamless Multi-Omics Integration

Easily connect proteomics with genomics, transcriptomics, and metabolomics for deeper, systems-level insights.

Seamless Multi-Omics Integration
Seamless Multi-Omics Integration

Easily connect proteomics with genomics, transcriptomics, and metabolomics for deeper, systems-level insights.

Proven Experience at ScaleProven Experience at Scale
Proven Experience at Scale

With 200,000+ samples processed across 250+ species and 300+ sample types, our expertise translates into reliable results.

Proven Experience at Scale
Proven Experience at Scale

With 200,000+ samples processed across 250+ species and 300+ sample types, our expertise translates into reliable results.

Advanced Platform Advanced Platform
Advanced Platform

Powered by the Thermo Orbitrap Astral platform, our quantitative proteomics delivers high resolution, ultra sensitivity, and exceptional throughput.

Advanced Platform
Advanced Platform

Powered by the Thermo Orbitrap Astral platform, our quantitative proteomics delivers high resolution, ultra sensitivity, and exceptional throughput.

Applications

DIA proteomics using the Orbitrap Astral mass spectrometer is particularly suitable for a variety of high-throughput, high-sensitivity proteomic applications, including:

Precision Medicine

Identifies specific biomarkers and signatures for patient classification and personalized surveillance, especially for oncology, diabetes, and Alzheimer's disease.

Precision Medicine

Identifies specific biomarkers and signatures for patient classification and personalized surveillance, especially for oncology, diabetes, and Alzheimer's disease.

Disease Mechanism Elucidation

Compares protein abundances between diseased and healthy states to uncover the molecular drivers of pathogenesis.

Disease Mechanism Elucidation

Compares protein abundances between diseased and healthy states to uncover the molecular drivers of pathogenesis.

Therapeutic target discovery

Provides comprehensive, quantitative information about protein networks, drug-target interactions, and target deconvolution.

Therapeutic target discovery

Provides comprehensive, quantitative information about protein networks, drug-target interactions, and target deconvolution.

Host-Pathogen Interactions

Studies how viruses and pathogens hijack cellular machinery and counteract host immune responses by altering phosphorylation states.

Host-Pathogen Interactions

Studies how viruses and pathogens hijack cellular machinery and counteract host immune responses by altering phosphorylation states.

Applications

DIA proteomics using the Orbitrap Astral mass spectrometer is particularly suitable for a variety of high-throughput, high-sensitivity proteomic applications, including:

Precision Medicine

Identifies specific biomarkers and signatures for patient classification and personalized surveillance, especially for oncology, diabetes, and Alzheimer's disease.

Precision Medicine

Identifies specific biomarkers and signatures for patient classification and personalized surveillance, especially for oncology, diabetes, and Alzheimer's disease.

Disease Mechanism Elucidation

Compares protein abundances between diseased and healthy states to uncover the molecular drivers of pathogenesis.

Disease Mechanism Elucidation

Compares protein abundances between diseased and healthy states to uncover the molecular drivers of pathogenesis.

Therapeutic target discovery

Provides comprehensive, quantitative information about protein networks, drug-target interactions, and target deconvolution.

Therapeutic target discovery

Provides comprehensive, quantitative information about protein networks, drug-target interactions, and target deconvolution.

Host-Pathogen Interactions

Studies how viruses and pathogens hijack cellular machinery and counteract host immune responses by altering phosphorylation states.

Host-Pathogen Interactions

Studies how viruses and pathogens hijack cellular machinery and counteract host immune responses by altering phosphorylation states.

Specifications

Sample Requirements

Sample amounts are listed for reference only. Download the Sample Submission Guidelines to learn more. For detailed information, please contact us with your customized requests.

Sample Type*Sample Amount
Human Plasma/SerumNeat
(no high abundant protein depletion procedure)
5 μL
High-abundance protein depletion for human blood (affinity-based)10 μL
Animal TissueSoft tissue (brain, heart, liver, spleen, lung, kidney, muscle, etc.)10 mg
Tough tissue (hair, cartilage, etc.)200 mg
Suspension/adherent cultured cells (it is crucial to meet the required cell pellet volume) 2×10^6 (10 μL cell pellet)
Body Fluids (most body fluids contain large amount of proteins, so undiluted sample is preferred)Cerebrospinal fluid/Semen/ Follicular Fluid/Saliva/Tear500 μL
Urine10 mL
Breast milk10 μL
Extracted protein sample (solvent buffer reagent components must be provided)Non-detergent containing protein sample (optimal buffer with 6M Urea, preferred protein concentration ≥ 0.5 μg/μL)100 μg
Detergent containing protein sample (including SDS, triton X-100, NP40, CHAPS, etc.)200 μg
*Please contact us for more information.

Sample Requirements

Sample amounts are listed for reference only. Download the Sample Submission Guidelines to learn more. For detailed information, please contact us with your customized requests.

Sample Type*Sample Amount
Human Plasma/SerumNeat
(no high abundant protein depletion procedure)
5 μL
High-abundance protein depletion for human blood (affinity-based)10 μL
Animal TissueSoft tissue (brain, heart, liver, spleen, lung, kidney, muscle, etc.)10 mg
Tough tissue (hair, cartilage, etc.)200 mg
Suspension/adherent cultured cells (it is crucial to meet the required cell pellet volume) 2×10^6 (10 μL cell pellet)
Body Fluids (most body fluids contain large amount of proteins, so undiluted sample is preferred)Cerebrospinal fluid/Semen/ Follicular Fluid/Saliva/Tear500 μL
Urine10 mL
Breast milk10 μL
Extracted protein sample (solvent buffer reagent components must be provided)Non-detergent containing protein sample (optimal buffer with 6M Urea, preferred protein concentration ≥ 0.5 μg/μL)100 μg
Detergent containing protein sample (including SDS, triton X-100, NP40, CHAPS, etc.)200 μg
*Please contact us for more information.

Sample Requirements

Sample amounts are listed for reference only. Download the Sample Submission Guidelines to learn more. For detailed information, please contact us with your customized requests.

Sample Type*Sample Amount
Human Plasma/SerumNeat
(no high abundant protein depletion procedure)
5 μL
High-abundance protein depletion for human blood (affinity-based)10 μL
Animal TissueSoft tissue (brain, heart, liver, spleen, lung, kidney, muscle, etc.)10 mg
Tough tissue (hair, cartilage, etc.)200 mg
Suspension/adherent cultured cells (it is crucial to meet the required cell pellet volume) 2×10^6 (10 μL cell pellet)
Body Fluids (most body fluids contain large amount of proteins, so undiluted sample is preferred)Cerebrospinal fluid/Semen/ Follicular Fluid/Saliva/Tear500 μL
Urine10 mL
Breast milk10 μL
Extracted protein sample (solvent buffer reagent components must be provided)Non-detergent containing protein sample (optimal buffer with 6M Urea, preferred protein concentration ≥ 0.5 μg/μL)100 μg
Detergent containing protein sample (including SDS, triton X-100, NP40, CHAPS, etc.)200 μg
*Please contact us for more information.

Sample Requirements

Sample amounts are listed for reference only. Download the Sample Submission Guidelines to learn more. For detailed information, please contact us with your customized requests.

Sample Type*Sample Amount
Human Plasma/SerumNeat
(no high abundant protein depletion procedure)
5 μL
High-abundance protein depletion for human blood (affinity-based)10 μL
Animal TissueSoft tissue (brain, heart, liver, spleen, lung, kidney, muscle, etc.)10 mg
Tough tissue (hair, cartilage, etc.)200 mg
Suspension/adherent cultured cells (it is crucial to meet the required cell pellet volume) 2×10^6 (10 μL cell pellet)
Body Fluids (most body fluids contain large amount of proteins, so undiluted sample is preferred)Cerebrospinal fluid/Semen/ Follicular Fluid/Saliva/Tear500 μL
Urine10 mL
Breast milk10 μL
Extracted protein sample (solvent buffer reagent components must be provided)Non-detergent containing protein sample (optimal buffer with 6M Urea, preferred protein concentration ≥ 0.5 μg/μL)100 μg
Detergent containing protein sample (including SDS, triton X-100, NP40, CHAPS, etc.)200 μg
*Please contact us for more information.

Detection Details

The Orbitrap Astral mass spectrometer integrates three complementary mass analyzers into a single platform, combining precision, resolution, and speed to deliver outstanding performance and usability.

1. Quadrupole mass analyzer: Enables precise precursor ion selection.

2. Orbitrap mass analyzer: Delivers high-resolution, high dynamic range HRAM (High-Resolution Accurate Mass) spectra.

3. Astral mass analyzer: Provides high-sensitivity detection and rapid acquisition of high dynamic range HRAM spectra at speeds of up to 200 Hz.

Analyzer TypeAstral Mass Analyzer
SensitivitySingle ion detection
HRAM scan rateUp to 200 Hz
Interscan dynamic range>1000 with single microscan
Resolution80,000 at m/z 524
Mass accuracyRMS <5 ppm
Mass rangem/z 40-6,000
Scan modeDIA

Detection Details

The Orbitrap Astral mass spectrometer integrates three complementary mass analyzers into a single platform, combining precision, resolution, and speed to deliver outstanding performance and usability.

1. Quadrupole mass analyzer: Enables precise precursor ion selection.

2. Orbitrap mass analyzer: Delivers high-resolution, high dynamic range HRAM (High-Resolution Accurate Mass) spectra.

3. Astral mass analyzer: Provides high-sensitivity detection and rapid acquisition of high dynamic range HRAM spectra at speeds of up to 200 Hz.

Analyzer TypeAstral Mass Analyzer
SensitivitySingle ion detection
HRAM scan rateUp to 200 Hz
Interscan dynamic range>1000 with single microscan
Resolution80,000 at m/z 524
Mass accuracyRMS <5 ppm
Mass rangem/z 40-6,000
Scan modeDIA

Detection Details

The Orbitrap Astral mass spectrometer integrates three complementary mass analyzers into a single platform, combining precision, resolution, and speed to deliver outstanding performance and usability.

1. Quadrupole mass analyzer: Enables precise precursor ion selection.

2. Orbitrap mass analyzer: Delivers high-resolution, high dynamic range HRAM (High-Resolution Accurate Mass) spectra.

3. Astral mass analyzer: Provides high-sensitivity detection and rapid acquisition of high dynamic range HRAM spectra at speeds of up to 200 Hz.

Analyzer TypeAstral Mass Analyzer
SensitivitySingle ion detection
HRAM scan rateUp to 200 Hz
Interscan dynamic range>1000 with single microscan
Resolution80,000 at m/z 524
Mass accuracyRMS <5 ppm
Mass rangem/z 40-6,000
Scan modeDIA

Detection Details

The Orbitrap Astral mass spectrometer integrates three complementary mass analyzers into a single platform, combining precision, resolution, and speed to deliver outstanding performance and usability.

1. Quadrupole mass analyzer: Enables precise precursor ion selection.

2. Orbitrap mass analyzer: Delivers high-resolution, high dynamic range HRAM (High-Resolution Accurate Mass) spectra.

3. Astral mass analyzer: Provides high-sensitivity detection and rapid acquisition of high dynamic range HRAM spectra at speeds of up to 200 Hz.

Analyzer TypeAstral Mass Analyzer
SensitivitySingle ion detection
HRAM scan rateUp to 200 Hz
Interscan dynamic range>1000 with single microscan
Resolution80,000 at m/z 524
Mass accuracyRMS <5 ppm
Mass rangem/z 40-6,000
Scan modeDIA

Project Workflow

From sample preparation to final data interpretation, every step of the proteomics workflow influences data quality and depth. At Novogene, we apply rigorous quality control throughout the entire process to ensure accurate, reliable, and high-quality proteomics results. The experimental workflow is as follows:

1. Sample Preparation

Protein extraction and cleanup from tissues, cells, body fluids, and so on.

2. Protein Digestion

In-solution or on-beads trypsion digestion into peptides.

3. LC-MSMS detection

Protein identification and sample QC.

4. Database Search & Bioinformatics

Spectra searched in DIA-NN for peptide mapping.

5. Report & Biological insights

Comprehensive reports spanning qualitative and quantitative analysis to in-depth functional enrichment.

Project Workflow

Project Workflow

From sample preparation to final data interpretation, every step of the proteomics workflow influences data quality and depth. At Novogene, we apply rigorous quality control throughout the entire process to ensure accurate, reliable, and high-quality proteomics results. The experimental workflow is as follows:

1. Sample Preparation

Protein extraction and cleanup from tissues, cells, body fluids, and so on.

2. Protein Digestion

In-solution or on-beads trypsion digestion into peptides.

3. LC-MSMS detection

Protein identification and sample QC.

4. Database Search & Bioinformatics

Spectra searched in DIA-NN for peptide mapping.

5. Report & Biological insights

Comprehensive reports spanning qualitative and quantitative analysis to in-depth functional enrichment.

Project Workflow

Project Workflow

From sample preparation to final data interpretation, every step of the proteomics workflow influences data quality and depth. At Novogene, we apply rigorous quality control throughout the entire process to ensure accurate, reliable, and high-quality proteomics results. The experimental workflow is as follows:

1. Sample Preparation

Protein extraction and cleanup from tissues, cells, body fluids, and so on.

2. Protein Digestion

In-solution or on-beads trypsion digestion into peptides.

3. LC-MSMS detection

Protein identification and sample QC.

4. Database Search & Bioinformatics

Spectra searched in DIA-NN for peptide mapping.

5. Report & Biological insights

Comprehensive reports spanning qualitative and quantitative analysis to in-depth functional enrichment.

Project Workflow

Project Workflow

From sample preparation to final data interpretation, every step of the proteomics workflow influences data quality and depth. At Novogene, we apply rigorous quality control throughout the entire process to ensure accurate, reliable, and high-quality proteomics results. The experimental workflow is as follows:

1. Sample Preparation

Protein extraction and cleanup from tissues, cells, body fluids, and so on.

2. Protein Digestion

In-solution or on-beads trypsion digestion into peptides.

3. LC-MSMS detection

Protein identification and sample QC.

4. Database Search & Bioinformatics

Spectra searched in DIA-NN for peptide mapping.

5. Report & Biological insights

Comprehensive reports spanning qualitative and quantitative analysis to in-depth functional enrichment.

Project Workflow

Specifications

Sample Requirements

Sample amounts are listed for reference only. Download the Sample Submission Guidelines to learn more. For detailed information, please contact us with your customized requests.

Sample Type*Sample Amount
Human Plasma/SerumNeat
(no high abundant protein depletion procedure)
5 μL
High-abundance protein depletion for human blood (affinity-based)10 μL
Animal TissueSoft tissue (brain, heart, liver, spleen, lung, kidney, muscle, etc.)10 mg
Tough tissue (hair, cartilage, etc.)200 mg
Suspension/adherent cultured cells (it is crucial to meet the required cell pellet volume) 2×10^6 (10 μL cell pellet)
Body Fluids (most body fluids contain large amount of proteins, so undiluted sample is preferred)Cerebrospinal fluid/Semen/ Follicular Fluid/Saliva/Tear500 μL
Urine10 mL
Breast milk10 μL
Extracted protein sample (solvent buffer reagent components must be provided)Non-detergent containing protein sample (optimal buffer with 6M Urea, preferred protein concentration ≥ 0.5 μg/μL)100 μg
Detergent containing protein sample (including SDS, triton X-100, NP40, CHAPS, etc.)200 μg
*Please contact us for more information.

Sample Requirements

Sample amounts are listed for reference only. Download the Sample Submission Guidelines to learn more. For detailed information, please contact us with your customized requests.

Sample Type*Sample Amount
Human Plasma/SerumNeat
(no high abundant protein depletion procedure)
5 μL
High-abundance protein depletion for human blood (affinity-based)10 μL
Animal TissueSoft tissue (brain, heart, liver, spleen, lung, kidney, muscle, etc.)10 mg
Tough tissue (hair, cartilage, etc.)200 mg
Suspension/adherent cultured cells (it is crucial to meet the required cell pellet volume) 2×10^6 (10 μL cell pellet)
Body Fluids (most body fluids contain large amount of proteins, so undiluted sample is preferred)Cerebrospinal fluid/Semen/ Follicular Fluid/Saliva/Tear500 μL
Urine10 mL
Breast milk10 μL
Extracted protein sample (solvent buffer reagent components must be provided)Non-detergent containing protein sample (optimal buffer with 6M Urea, preferred protein concentration ≥ 0.5 μg/μL)100 μg
Detergent containing protein sample (including SDS, triton X-100, NP40, CHAPS, etc.)200 μg
*Please contact us for more information.

Sample Requirements

Sample amounts are listed for reference only. Download the Sample Submission Guidelines to learn more. For detailed information, please contact us with your customized requests.

Sample Type*Sample Amount
Human Plasma/SerumNeat
(no high abundant protein depletion procedure)
5 μL
High-abundance protein depletion for human blood (affinity-based)10 μL
Animal TissueSoft tissue (brain, heart, liver, spleen, lung, kidney, muscle, etc.)10 mg
Tough tissue (hair, cartilage, etc.)200 mg
Suspension/adherent cultured cells (it is crucial to meet the required cell pellet volume) 2×10^6 (10 μL cell pellet)
Body Fluids (most body fluids contain large amount of proteins, so undiluted sample is preferred)Cerebrospinal fluid/Semen/ Follicular Fluid/Saliva/Tear500 μL
Urine10 mL
Breast milk10 μL
Extracted protein sample (solvent buffer reagent components must be provided)Non-detergent containing protein sample (optimal buffer with 6M Urea, preferred protein concentration ≥ 0.5 μg/μL)100 μg
Detergent containing protein sample (including SDS, triton X-100, NP40, CHAPS, etc.)200 μg
*Please contact us for more information.

Sample Requirements

Sample amounts are listed for reference only. Download the Sample Submission Guidelines to learn more. For detailed information, please contact us with your customized requests.

Sample Type*Sample Amount
Human Plasma/SerumNeat
(no high abundant protein depletion procedure)
5 μL
High-abundance protein depletion for human blood (affinity-based)10 μL
Animal TissueSoft tissue (brain, heart, liver, spleen, lung, kidney, muscle, etc.)10 mg
Tough tissue (hair, cartilage, etc.)200 mg
Suspension/adherent cultured cells (it is crucial to meet the required cell pellet volume) 2×10^6 (10 μL cell pellet)
Body Fluids (most body fluids contain large amount of proteins, so undiluted sample is preferred)Cerebrospinal fluid/Semen/ Follicular Fluid/Saliva/Tear500 μL
Urine10 mL
Breast milk10 μL
Extracted protein sample (solvent buffer reagent components must be provided)Non-detergent containing protein sample (optimal buffer with 6M Urea, preferred protein concentration ≥ 0.5 μg/μL)100 μg
Detergent containing protein sample (including SDS, triton X-100, NP40, CHAPS, etc.)200 μg
*Please contact us for more information.

Detection Details

The Orbitrap Astral mass spectrometer integrates three complementary mass analyzers into a single platform, combining precision, resolution, and speed to deliver outstanding performance and usability.

1. Quadrupole mass analyzer: Enables precise precursor ion selection.

2. Orbitrap mass analyzer: Delivers high-resolution, high dynamic range HRAM (High-Resolution Accurate Mass) spectra.

3. Astral mass analyzer: Provides high-sensitivity detection and rapid acquisition of high dynamic range HRAM spectra at speeds of up to 200 Hz.

Analyzer TypeAstral Mass Analyzer
SensitivitySingle ion detection
HRAM scan rateUp to 200 Hz
Interscan dynamic range>1000 with single microscan
Resolution80,000 at m/z 524
Mass accuracyRMS <5 ppm
Mass rangem/z 40-6,000
Scan modeDIA

Detection Details

The Orbitrap Astral mass spectrometer integrates three complementary mass analyzers into a single platform, combining precision, resolution, and speed to deliver outstanding performance and usability.

1. Quadrupole mass analyzer: Enables precise precursor ion selection.

2. Orbitrap mass analyzer: Delivers high-resolution, high dynamic range HRAM (High-Resolution Accurate Mass) spectra.

3. Astral mass analyzer: Provides high-sensitivity detection and rapid acquisition of high dynamic range HRAM spectra at speeds of up to 200 Hz.

Analyzer TypeAstral Mass Analyzer
SensitivitySingle ion detection
HRAM scan rateUp to 200 Hz
Interscan dynamic range>1000 with single microscan
Resolution80,000 at m/z 524
Mass accuracyRMS <5 ppm
Mass rangem/z 40-6,000
Scan modeDIA

Detection Details

The Orbitrap Astral mass spectrometer integrates three complementary mass analyzers into a single platform, combining precision, resolution, and speed to deliver outstanding performance and usability.

1. Quadrupole mass analyzer: Enables precise precursor ion selection.

2. Orbitrap mass analyzer: Delivers high-resolution, high dynamic range HRAM (High-Resolution Accurate Mass) spectra.

3. Astral mass analyzer: Provides high-sensitivity detection and rapid acquisition of high dynamic range HRAM spectra at speeds of up to 200 Hz.

Analyzer TypeAstral Mass Analyzer
SensitivitySingle ion detection
HRAM scan rateUp to 200 Hz
Interscan dynamic range>1000 with single microscan
Resolution80,000 at m/z 524
Mass accuracyRMS <5 ppm
Mass rangem/z 40-6,000
Scan modeDIA

Detection Details

The Orbitrap Astral mass spectrometer integrates three complementary mass analyzers into a single platform, combining precision, resolution, and speed to deliver outstanding performance and usability.

1. Quadrupole mass analyzer: Enables precise precursor ion selection.

2. Orbitrap mass analyzer: Delivers high-resolution, high dynamic range HRAM (High-Resolution Accurate Mass) spectra.

3. Astral mass analyzer: Provides high-sensitivity detection and rapid acquisition of high dynamic range HRAM spectra at speeds of up to 200 Hz.

Analyzer TypeAstral Mass Analyzer
SensitivitySingle ion detection
HRAM scan rateUp to 200 Hz
Interscan dynamic range>1000 with single microscan
Resolution80,000 at m/z 524
Mass accuracyRMS <5 ppm
Mass rangem/z 40-6,000
Scan modeDIA

Project Workflow

From sample preparation to final data interpretation, every step of the proteomics workflow influences data quality and depth. At Novogene, we apply rigorous quality control throughout the entire process to ensure accurate, reliable, and high-quality proteomics results. The experimental workflow is as follows:

1. Sample Preparation

Protein extraction and cleanup from tissues, cells, body fluids, and so on.

2. Protein Digestion

In-solution or on-beads trypsion digestion into peptides.

3. LC-MSMS detection

Protein identification and sample QC.

4. Database Search & Bioinformatics

Spectra searched in DIA-NN for peptide mapping.

5. Report & Biological insights

Comprehensive reports spanning qualitative and quantitative analysis to in-depth functional enrichment.

Project Workflow

Project Workflow

From sample preparation to final data interpretation, every step of the proteomics workflow influences data quality and depth. At Novogene, we apply rigorous quality control throughout the entire process to ensure accurate, reliable, and high-quality proteomics results. The experimental workflow is as follows:

1. Sample Preparation

Protein extraction and cleanup from tissues, cells, body fluids, and so on.

2. Protein Digestion

In-solution or on-beads trypsion digestion into peptides.

3. LC-MSMS detection

Protein identification and sample QC.

4. Database Search & Bioinformatics

Spectra searched in DIA-NN for peptide mapping.

5. Report & Biological insights

Comprehensive reports spanning qualitative and quantitative analysis to in-depth functional enrichment.

Project Workflow

Project Workflow

From sample preparation to final data interpretation, every step of the proteomics workflow influences data quality and depth. At Novogene, we apply rigorous quality control throughout the entire process to ensure accurate, reliable, and high-quality proteomics results. The experimental workflow is as follows:

1. Sample Preparation

Protein extraction and cleanup from tissues, cells, body fluids, and so on.

2. Protein Digestion

In-solution or on-beads trypsion digestion into peptides.

3. LC-MSMS detection

Protein identification and sample QC.

4. Database Search & Bioinformatics

Spectra searched in DIA-NN for peptide mapping.

5. Report & Biological insights

Comprehensive reports spanning qualitative and quantitative analysis to in-depth functional enrichment.

Project Workflow

Project Workflow

From sample preparation to final data interpretation, every step of the proteomics workflow influences data quality and depth. At Novogene, we apply rigorous quality control throughout the entire process to ensure accurate, reliable, and high-quality proteomics results. The experimental workflow is as follows:

1. Sample Preparation

Protein extraction and cleanup from tissues, cells, body fluids, and so on.

2. Protein Digestion

In-solution or on-beads trypsion digestion into peptides.

3. LC-MSMS detection

Protein identification and sample QC.

4. Database Search & Bioinformatics

Spectra searched in DIA-NN for peptide mapping.

5. Report & Biological insights

Comprehensive reports spanning qualitative and quantitative analysis to in-depth functional enrichment.

Project Workflow

Resources

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Protein Functional Annotation

To label each protein with its potential biological roles

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Differentially Expressed Proteins (DEPs) Analysis

Visualization of DEPs

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Differential Enrichment Analysis

To extract the statistically significant biological themes from DEPs

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1/1
GSEA Analysis

Gene Set Enrichment Analysis (GSEA) based on different database, including GO, KEGG.

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1/1
PPI Analysis

Protein-protein interaction (PPI) is performed using the StringDB protein interaction database

Image
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Image
Image
1/5
Protein Functional Annotation

To label each protein with its potential biological roles

Image
Image
Image
Image
Image
Image
Image
Image
Image
Image
1/5
Differentially Expressed Proteins (DEPs) Analysis

Visualization of DEPs

Image
Image
Image
Image
Image
Image
1/3
Differential Enrichment Analysis

To extract the statistically significant biological themes from DEPs

Image
Image
1/1
GSEA Analysis

Gene Set Enrichment Analysis (GSEA) based on different database, including GO, KEGG.

Image
Image
1/1
PPI Analysis

Protein-protein interaction (PPI) is performed using the StringDB protein interaction database

Resources

Image
Image
Image
Image
Image
Image
Image
Image
Image
Image
1/5
Protein Functional Annotation

To label each protein with its potential biological roles

Image
Image
Image
Image
Image
Image
Image
Image
Image
Image
1/5
Differentially Expressed Proteins (DEPs) Analysis

Visualization of DEPs

Image
Image
Image
Image
Image
Image
1/3
Differential Enrichment Analysis

To extract the statistically significant biological themes from DEPs

Image
Image
1/1
GSEA Analysis

Gene Set Enrichment Analysis (GSEA) based on different database, including GO, KEGG.

Image
Image
1/1
PPI Analysis

Protein-protein interaction (PPI) is performed using the StringDB protein interaction database

Image
Image
Image
Image
Image
Image
Image
Image
Image
Image
1/5
Protein Functional Annotation

To label each protein with its potential biological roles

Image
Image
Image
Image
Image
Image
Image
Image
Image
Image
1/5
Differentially Expressed Proteins (DEPs) Analysis

Visualization of DEPs

Image
Image
Image
Image
Image
Image
1/3
Differential Enrichment Analysis

To extract the statistically significant biological themes from DEPs

Image
Image
1/1
GSEA Analysis

Gene Set Enrichment Analysis (GSEA) based on different database, including GO, KEGG.

Image
Image
1/1
PPI Analysis

Protein-protein interaction (PPI) is performed using the StringDB protein interaction database

Frequently Asked Questions

How many repeated samples are required?

We strongly recommend a minimum of 3 biological replicates per group, as this is critical for ensuring the validity of subsequent bioinformatics analyses.

What is quality control (QC) workflow for protein samples?

How should I prepare and ship my samples?

What is the typical turnaround time?

More Services

Olink Proteomics
(Olink Proteomics)
Olink Proteomics
(Olink Proteomics)
Untargeted Metabolomics
(Untargeted Metabolomics)
Untargeted Metabolomics
(Untargeted Metabolomics)
mRNA Sequencing
(mRNA Sequencing)
mRNA Sequencing
(mRNA Sequencing)
Chromatin Immunoprecipitation Sequencing (ChIP-seq)
(Chromatin Immunoprecipitation Sequencing (ChIP-seq))
Chromatin Immunoprecipitation Sequencing (ChIP-seq)
(Chromatin Immunoprecipitation Sequencing (ChIP-seq))
Whole Genome Bisulfite Sequencing (WGBS)
(Whole Genome Bisulfite Sequencing (WGBS))
Whole Genome Bisulfite Sequencing (WGBS)
(Whole Genome Bisulfite Sequencing (WGBS))
10x Single Cell RNA Sequencing
(10x Single Cell RNA Sequencing)
10x Single Cell RNA Sequencing
(10x Single Cell RNA Sequencing)
Spatial Transcriptomics Sequencing
(Spatial Transcriptomics Sequencing)
Spatial Transcriptomics Sequencing
(Spatial Transcriptomics Sequencing)
Human Whole Genome Sequencing
(Human Whole Genome Sequencing)
Human Whole Genome Sequencing
(Human Whole Genome Sequencing)

More Services

Olink Proteomics
(Olink Proteomics)
Olink Proteomics
(Olink Proteomics)
Untargeted Metabolomics
(Untargeted Metabolomics)
Untargeted Metabolomics
(Untargeted Metabolomics)
mRNA Sequencing
(mRNA Sequencing)
mRNA Sequencing
(mRNA Sequencing)
Chromatin Immunoprecipitation Sequencing (ChIP-seq)
(Chromatin Immunoprecipitation Sequencing (ChIP-seq))
Chromatin Immunoprecipitation Sequencing (ChIP-seq)
(Chromatin Immunoprecipitation Sequencing (ChIP-seq))
Whole Genome Bisulfite Sequencing (WGBS)
(Whole Genome Bisulfite Sequencing (WGBS))
Whole Genome Bisulfite Sequencing (WGBS)
(Whole Genome Bisulfite Sequencing (WGBS))
10x Single Cell RNA Sequencing
(10x Single Cell RNA Sequencing)
10x Single Cell RNA Sequencing
(10x Single Cell RNA Sequencing)
Spatial Transcriptomics Sequencing
(Spatial Transcriptomics Sequencing)
Spatial Transcriptomics Sequencing
(Spatial Transcriptomics Sequencing)
Human Whole Genome Sequencing
(Human Whole Genome Sequencing)
Human Whole Genome Sequencing
(Human Whole Genome Sequencing)
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Quantitative Proteomics

Quantitative profiling of protein abundance to reveal differential expression and support studies of biological processes and disease mechanisms.
OverviewOverview
BenefitsBenefits
ApplicationsApplications
SpecificationsSpecifications
ResourcesResources

Proteomics reveals functional biology by directly quantifying proteins, enabling deeper insights into disease mechanisms

and biomarker discovery beyond genomic predictions.


Leveraging library-free DIA on the Thermo Orbitrap Astral platform, Novogene delivers next-generation quantitative proteomics with superior data completeness, depth, and reproducibility—without missing values or DDA libraries.


Choose Rapid DIA for high-throughput studies or Deep DIA for comprehensive proteome coverage, both designed to accelerate confident biological discovery.

Why Choose Novogene for Your Proteomics Needs?

End-to-End WorkflowEnd-to-End Workflow
End-to-End Workflow

From sample preparation to LC-MS/MS analysis and expert data interpretation, we deliver a fully integrated proteomics solution.

End-to-End Workflow
End-to-End Workflow

From sample preparation to LC-MS/MS analysis and expert data interpretation, we deliver a fully integrated proteomics solution.

Scalable High-Throughput PerformanceScalable High-Throughput Performance
Scalable High-Throughput Performance

Our automated platform supports large cohort studies, processing up to 180 samples per day while identifying over 8,000 proteins.

Scalable High-Throughput Performance
Scalable High-Throughput Performance

Our automated platform supports large cohort studies, processing up to 180 samples per day while identifying over 8,000 proteins.

Flexible Study DesignFlexible Study Design
Flexible Study Design

Detection depth and acquisition time can be tailored to match your specific research objectives.

Flexible Study Design
Flexible Study Design

Detection depth and acquisition time can be tailored to match your specific research objectives.

Seamless Multi-Omics Integration Seamless Multi-Omics Integration
Seamless Multi-Omics Integration

Easily connect proteomics with genomics, transcriptomics, and metabolomics for deeper, systems-level insights.

Seamless Multi-Omics Integration
Seamless Multi-Omics Integration

Easily connect proteomics with genomics, transcriptomics, and metabolomics for deeper, systems-level insights.

Proven Experience at ScaleProven Experience at Scale
Proven Experience at Scale

With 200,000+ samples processed across 250+ species and 300+ sample types, our expertise translates into reliable results.

Proven Experience at Scale
Proven Experience at Scale

With 200,000+ samples processed across 250+ species and 300+ sample types, our expertise translates into reliable results.

Advanced Platform Advanced Platform
Advanced Platform

Powered by the Thermo Orbitrap Astral platform, our quantitative proteomics delivers high resolution, ultra sensitivity, and exceptional throughput.

Advanced Platform
Advanced Platform

Powered by the Thermo Orbitrap Astral platform, our quantitative proteomics delivers high resolution, ultra sensitivity, and exceptional throughput.

Why Choose Novogene for Your Proteomics Needs?

End-to-End WorkflowEnd-to-End Workflow
End-to-End Workflow

From sample preparation to LC-MS/MS analysis and expert data interpretation, we deliver a fully integrated proteomics solution.

End-to-End Workflow
End-to-End Workflow

From sample preparation to LC-MS/MS analysis and expert data interpretation, we deliver a fully integrated proteomics solution.

Scalable High-Throughput PerformanceScalable High-Throughput Performance
Scalable High-Throughput Performance

Our automated platform supports large cohort studies, processing up to 180 samples per day while identifying over 8,000 proteins.

Scalable High-Throughput Performance
Scalable High-Throughput Performance

Our automated platform supports large cohort studies, processing up to 180 samples per day while identifying over 8,000 proteins.

Flexible Study DesignFlexible Study Design
Flexible Study Design

Detection depth and acquisition time can be tailored to match your specific research objectives.

Flexible Study Design
Flexible Study Design

Detection depth and acquisition time can be tailored to match your specific research objectives.

Seamless Multi-Omics Integration Seamless Multi-Omics Integration
Seamless Multi-Omics Integration

Easily connect proteomics with genomics, transcriptomics, and metabolomics for deeper, systems-level insights.

Seamless Multi-Omics Integration
Seamless Multi-Omics Integration

Easily connect proteomics with genomics, transcriptomics, and metabolomics for deeper, systems-level insights.

Proven Experience at ScaleProven Experience at Scale
Proven Experience at Scale

With 200,000+ samples processed across 250+ species and 300+ sample types, our expertise translates into reliable results.

Proven Experience at Scale
Proven Experience at Scale

With 200,000+ samples processed across 250+ species and 300+ sample types, our expertise translates into reliable results.

Advanced Platform Advanced Platform
Advanced Platform

Powered by the Thermo Orbitrap Astral platform, our quantitative proteomics delivers high resolution, ultra sensitivity, and exceptional throughput.

Advanced Platform
Advanced Platform

Powered by the Thermo Orbitrap Astral platform, our quantitative proteomics delivers high resolution, ultra sensitivity, and exceptional throughput.

Applications

DIA proteomics using the Orbitrap Astral mass spectrometer is particularly suitable for a variety of high-throughput, high-sensitivity proteomic applications, including:

Precision Medicine

Identifies specific biomarkers and signatures for patient classification and personalized surveillance, especially for oncology, diabetes, and Alzheimer's disease.

Precision Medicine

Identifies specific biomarkers and signatures for patient classification and personalized surveillance, especially for oncology, diabetes, and Alzheimer's disease.

Disease Mechanism Elucidation

Compares protein abundances between diseased and healthy states to uncover the molecular drivers of pathogenesis.

Disease Mechanism Elucidation

Compares protein abundances between diseased and healthy states to uncover the molecular drivers of pathogenesis.

Therapeutic target discovery

Provides comprehensive, quantitative information about protein networks, drug-target interactions, and target deconvolution.

Therapeutic target discovery

Provides comprehensive, quantitative information about protein networks, drug-target interactions, and target deconvolution.

Host-Pathogen Interactions

Studies how viruses and pathogens hijack cellular machinery and counteract host immune responses by altering phosphorylation states.

Host-Pathogen Interactions

Studies how viruses and pathogens hijack cellular machinery and counteract host immune responses by altering phosphorylation states.

Applications

DIA proteomics using the Orbitrap Astral mass spectrometer is particularly suitable for a variety of high-throughput, high-sensitivity proteomic applications, including:

Precision Medicine

Identifies specific biomarkers and signatures for patient classification and personalized surveillance, especially for oncology, diabetes, and Alzheimer's disease.

Precision Medicine

Identifies specific biomarkers and signatures for patient classification and personalized surveillance, especially for oncology, diabetes, and Alzheimer's disease.

Disease Mechanism Elucidation

Compares protein abundances between diseased and healthy states to uncover the molecular drivers of pathogenesis.

Disease Mechanism Elucidation

Compares protein abundances between diseased and healthy states to uncover the molecular drivers of pathogenesis.

Therapeutic target discovery

Provides comprehensive, quantitative information about protein networks, drug-target interactions, and target deconvolution.

Therapeutic target discovery

Provides comprehensive, quantitative information about protein networks, drug-target interactions, and target deconvolution.

Host-Pathogen Interactions

Studies how viruses and pathogens hijack cellular machinery and counteract host immune responses by altering phosphorylation states.

Host-Pathogen Interactions

Studies how viruses and pathogens hijack cellular machinery and counteract host immune responses by altering phosphorylation states.

Specifications

Sample Requirements

Sample amounts are listed for reference only. Download the Sample Submission Guidelines to learn more. For detailed information, please contact us with your customized requests.

Sample Type*Sample Amount
Human Plasma/SerumNeat
(no high abundant protein depletion procedure)
5 μL
High-abundance protein depletion for human blood (affinity-based)10 μL
Animal TissueSoft tissue (brain, heart, liver, spleen, lung, kidney, muscle, etc.)10 mg
Tough tissue (hair, cartilage, etc.)200 mg
Suspension/adherent cultured cells (it is crucial to meet the required cell pellet volume) 2×10^6 (10 μL cell pellet)
Body Fluids (most body fluids contain large amount of proteins, so undiluted sample is preferred)Cerebrospinal fluid/Semen/ Follicular Fluid/Saliva/Tear500 μL
Urine10 mL
Breast milk10 μL
Extracted protein sample (solvent buffer reagent components must be provided)Non-detergent containing protein sample (optimal buffer with 6M Urea, preferred protein concentration ≥ 0.5 μg/μL)100 μg
Detergent containing protein sample (including SDS, triton X-100, NP40, CHAPS, etc.)200 μg
*Please contact us for more information.

Sample Requirements

Sample amounts are listed for reference only. Download the Sample Submission Guidelines to learn more. For detailed information, please contact us with your customized requests.

Sample Type*Sample Amount
Human Plasma/SerumNeat
(no high abundant protein depletion procedure)
5 μL
High-abundance protein depletion for human blood (affinity-based)10 μL
Animal TissueSoft tissue (brain, heart, liver, spleen, lung, kidney, muscle, etc.)10 mg
Tough tissue (hair, cartilage, etc.)200 mg
Suspension/adherent cultured cells (it is crucial to meet the required cell pellet volume) 2×10^6 (10 μL cell pellet)
Body Fluids (most body fluids contain large amount of proteins, so undiluted sample is preferred)Cerebrospinal fluid/Semen/ Follicular Fluid/Saliva/Tear500 μL
Urine10 mL
Breast milk10 μL
Extracted protein sample (solvent buffer reagent components must be provided)Non-detergent containing protein sample (optimal buffer with 6M Urea, preferred protein concentration ≥ 0.5 μg/μL)100 μg
Detergent containing protein sample (including SDS, triton X-100, NP40, CHAPS, etc.)200 μg
*Please contact us for more information.

Sample Requirements

Sample amounts are listed for reference only. Download the Sample Submission Guidelines to learn more. For detailed information, please contact us with your customized requests.

Sample Type*Sample Amount
Human Plasma/SerumNeat
(no high abundant protein depletion procedure)
5 μL
High-abundance protein depletion for human blood (affinity-based)10 μL
Animal TissueSoft tissue (brain, heart, liver, spleen, lung, kidney, muscle, etc.)10 mg
Tough tissue (hair, cartilage, etc.)200 mg
Suspension/adherent cultured cells (it is crucial to meet the required cell pellet volume) 2×10^6 (10 μL cell pellet)
Body Fluids (most body fluids contain large amount of proteins, so undiluted sample is preferred)Cerebrospinal fluid/Semen/ Follicular Fluid/Saliva/Tear500 μL
Urine10 mL
Breast milk10 μL
Extracted protein sample (solvent buffer reagent components must be provided)Non-detergent containing protein sample (optimal buffer with 6M Urea, preferred protein concentration ≥ 0.5 μg/μL)100 μg
Detergent containing protein sample (including SDS, triton X-100, NP40, CHAPS, etc.)200 μg
*Please contact us for more information.

Sample Requirements

Sample amounts are listed for reference only. Download the Sample Submission Guidelines to learn more. For detailed information, please contact us with your customized requests.

Sample Type*Sample Amount
Human Plasma/SerumNeat
(no high abundant protein depletion procedure)
5 μL
High-abundance protein depletion for human blood (affinity-based)10 μL
Animal TissueSoft tissue (brain, heart, liver, spleen, lung, kidney, muscle, etc.)10 mg
Tough tissue (hair, cartilage, etc.)200 mg
Suspension/adherent cultured cells (it is crucial to meet the required cell pellet volume) 2×10^6 (10 μL cell pellet)
Body Fluids (most body fluids contain large amount of proteins, so undiluted sample is preferred)Cerebrospinal fluid/Semen/ Follicular Fluid/Saliva/Tear500 μL
Urine10 mL
Breast milk10 μL
Extracted protein sample (solvent buffer reagent components must be provided)Non-detergent containing protein sample (optimal buffer with 6M Urea, preferred protein concentration ≥ 0.5 μg/μL)100 μg
Detergent containing protein sample (including SDS, triton X-100, NP40, CHAPS, etc.)200 μg
*Please contact us for more information.

Detection Details

The Orbitrap Astral mass spectrometer integrates three complementary mass analyzers into a single platform, combining precision, resolution, and speed to deliver outstanding performance and usability.

1. Quadrupole mass analyzer: Enables precise precursor ion selection.

2. Orbitrap mass analyzer: Delivers high-resolution, high dynamic range HRAM (High-Resolution Accurate Mass) spectra.

3. Astral mass analyzer: Provides high-sensitivity detection and rapid acquisition of high dynamic range HRAM spectra at speeds of up to 200 Hz.

Analyzer TypeAstral Mass Analyzer
SensitivitySingle ion detection
HRAM scan rateUp to 200 Hz
Interscan dynamic range>1000 with single microscan
Resolution80,000 at m/z 524
Mass accuracyRMS <5 ppm
Mass rangem/z 40-6,000
Scan modeDIA

Detection Details

The Orbitrap Astral mass spectrometer integrates three complementary mass analyzers into a single platform, combining precision, resolution, and speed to deliver outstanding performance and usability.

1. Quadrupole mass analyzer: Enables precise precursor ion selection.

2. Orbitrap mass analyzer: Delivers high-resolution, high dynamic range HRAM (High-Resolution Accurate Mass) spectra.

3. Astral mass analyzer: Provides high-sensitivity detection and rapid acquisition of high dynamic range HRAM spectra at speeds of up to 200 Hz.

Analyzer TypeAstral Mass Analyzer
SensitivitySingle ion detection
HRAM scan rateUp to 200 Hz
Interscan dynamic range>1000 with single microscan
Resolution80,000 at m/z 524
Mass accuracyRMS <5 ppm
Mass rangem/z 40-6,000
Scan modeDIA

Detection Details

The Orbitrap Astral mass spectrometer integrates three complementary mass analyzers into a single platform, combining precision, resolution, and speed to deliver outstanding performance and usability.

1. Quadrupole mass analyzer: Enables precise precursor ion selection.

2. Orbitrap mass analyzer: Delivers high-resolution, high dynamic range HRAM (High-Resolution Accurate Mass) spectra.

3. Astral mass analyzer: Provides high-sensitivity detection and rapid acquisition of high dynamic range HRAM spectra at speeds of up to 200 Hz.

Analyzer TypeAstral Mass Analyzer
SensitivitySingle ion detection
HRAM scan rateUp to 200 Hz
Interscan dynamic range>1000 with single microscan
Resolution80,000 at m/z 524
Mass accuracyRMS <5 ppm
Mass rangem/z 40-6,000
Scan modeDIA

Detection Details

The Orbitrap Astral mass spectrometer integrates three complementary mass analyzers into a single platform, combining precision, resolution, and speed to deliver outstanding performance and usability.

1. Quadrupole mass analyzer: Enables precise precursor ion selection.

2. Orbitrap mass analyzer: Delivers high-resolution, high dynamic range HRAM (High-Resolution Accurate Mass) spectra.

3. Astral mass analyzer: Provides high-sensitivity detection and rapid acquisition of high dynamic range HRAM spectra at speeds of up to 200 Hz.

Analyzer TypeAstral Mass Analyzer
SensitivitySingle ion detection
HRAM scan rateUp to 200 Hz
Interscan dynamic range>1000 with single microscan
Resolution80,000 at m/z 524
Mass accuracyRMS <5 ppm
Mass rangem/z 40-6,000
Scan modeDIA

Project Workflow

From sample preparation to final data interpretation, every step of the proteomics workflow influences data quality and depth. At Novogene, we apply rigorous quality control throughout the entire process to ensure accurate, reliable, and high-quality proteomics results. The experimental workflow is as follows:

1. Sample Preparation

Protein extraction and cleanup from tissues, cells, body fluids, and so on.

2. Protein Digestion

In-solution or on-beads trypsion digestion into peptides.

3. LC-MSMS detection

Protein identification and sample QC.

4. Database Search & Bioinformatics

Spectra searched in DIA-NN for peptide mapping.

5. Report & Biological insights

Comprehensive reports spanning qualitative and quantitative analysis to in-depth functional enrichment.

Project Workflow

Project Workflow

From sample preparation to final data interpretation, every step of the proteomics workflow influences data quality and depth. At Novogene, we apply rigorous quality control throughout the entire process to ensure accurate, reliable, and high-quality proteomics results. The experimental workflow is as follows:

1. Sample Preparation

Protein extraction and cleanup from tissues, cells, body fluids, and so on.

2. Protein Digestion

In-solution or on-beads trypsion digestion into peptides.

3. LC-MSMS detection

Protein identification and sample QC.

4. Database Search & Bioinformatics

Spectra searched in DIA-NN for peptide mapping.

5. Report & Biological insights

Comprehensive reports spanning qualitative and quantitative analysis to in-depth functional enrichment.

Project Workflow

Project Workflow

From sample preparation to final data interpretation, every step of the proteomics workflow influences data quality and depth. At Novogene, we apply rigorous quality control throughout the entire process to ensure accurate, reliable, and high-quality proteomics results. The experimental workflow is as follows:

1. Sample Preparation

Protein extraction and cleanup from tissues, cells, body fluids, and so on.

2. Protein Digestion

In-solution or on-beads trypsion digestion into peptides.

3. LC-MSMS detection

Protein identification and sample QC.

4. Database Search & Bioinformatics

Spectra searched in DIA-NN for peptide mapping.

5. Report & Biological insights

Comprehensive reports spanning qualitative and quantitative analysis to in-depth functional enrichment.

Project Workflow

Project Workflow

From sample preparation to final data interpretation, every step of the proteomics workflow influences data quality and depth. At Novogene, we apply rigorous quality control throughout the entire process to ensure accurate, reliable, and high-quality proteomics results. The experimental workflow is as follows:

1. Sample Preparation

Protein extraction and cleanup from tissues, cells, body fluids, and so on.

2. Protein Digestion

In-solution or on-beads trypsion digestion into peptides.

3. LC-MSMS detection

Protein identification and sample QC.

4. Database Search & Bioinformatics

Spectra searched in DIA-NN for peptide mapping.

5. Report & Biological insights

Comprehensive reports spanning qualitative and quantitative analysis to in-depth functional enrichment.

Project Workflow

Specifications

Sample Requirements

Sample amounts are listed for reference only. Download the Sample Submission Guidelines to learn more. For detailed information, please contact us with your customized requests.

Sample Type*Sample Amount
Human Plasma/SerumNeat
(no high abundant protein depletion procedure)
5 μL
High-abundance protein depletion for human blood (affinity-based)10 μL
Animal TissueSoft tissue (brain, heart, liver, spleen, lung, kidney, muscle, etc.)10 mg
Tough tissue (hair, cartilage, etc.)200 mg
Suspension/adherent cultured cells (it is crucial to meet the required cell pellet volume) 2×10^6 (10 μL cell pellet)
Body Fluids (most body fluids contain large amount of proteins, so undiluted sample is preferred)Cerebrospinal fluid/Semen/ Follicular Fluid/Saliva/Tear500 μL
Urine10 mL
Breast milk10 μL
Extracted protein sample (solvent buffer reagent components must be provided)Non-detergent containing protein sample (optimal buffer with 6M Urea, preferred protein concentration ≥ 0.5 μg/μL)100 μg
Detergent containing protein sample (including SDS, triton X-100, NP40, CHAPS, etc.)200 μg
*Please contact us for more information.

Sample Requirements

Sample amounts are listed for reference only. Download the Sample Submission Guidelines to learn more. For detailed information, please contact us with your customized requests.

Sample Type*Sample Amount
Human Plasma/SerumNeat
(no high abundant protein depletion procedure)
5 μL
High-abundance protein depletion for human blood (affinity-based)10 μL
Animal TissueSoft tissue (brain, heart, liver, spleen, lung, kidney, muscle, etc.)10 mg
Tough tissue (hair, cartilage, etc.)200 mg
Suspension/adherent cultured cells (it is crucial to meet the required cell pellet volume) 2×10^6 (10 μL cell pellet)
Body Fluids (most body fluids contain large amount of proteins, so undiluted sample is preferred)Cerebrospinal fluid/Semen/ Follicular Fluid/Saliva/Tear500 μL
Urine10 mL
Breast milk10 μL
Extracted protein sample (solvent buffer reagent components must be provided)Non-detergent containing protein sample (optimal buffer with 6M Urea, preferred protein concentration ≥ 0.5 μg/μL)100 μg
Detergent containing protein sample (including SDS, triton X-100, NP40, CHAPS, etc.)200 μg
*Please contact us for more information.

Sample Requirements

Sample amounts are listed for reference only. Download the Sample Submission Guidelines to learn more. For detailed information, please contact us with your customized requests.

Sample Type*Sample Amount
Human Plasma/SerumNeat
(no high abundant protein depletion procedure)
5 μL
High-abundance protein depletion for human blood (affinity-based)10 μL
Animal TissueSoft tissue (brain, heart, liver, spleen, lung, kidney, muscle, etc.)10 mg
Tough tissue (hair, cartilage, etc.)200 mg
Suspension/adherent cultured cells (it is crucial to meet the required cell pellet volume) 2×10^6 (10 μL cell pellet)
Body Fluids (most body fluids contain large amount of proteins, so undiluted sample is preferred)Cerebrospinal fluid/Semen/ Follicular Fluid/Saliva/Tear500 μL
Urine10 mL
Breast milk10 μL
Extracted protein sample (solvent buffer reagent components must be provided)Non-detergent containing protein sample (optimal buffer with 6M Urea, preferred protein concentration ≥ 0.5 μg/μL)100 μg
Detergent containing protein sample (including SDS, triton X-100, NP40, CHAPS, etc.)200 μg
*Please contact us for more information.

Sample Requirements

Sample amounts are listed for reference only. Download the Sample Submission Guidelines to learn more. For detailed information, please contact us with your customized requests.

Sample Type*Sample Amount
Human Plasma/SerumNeat
(no high abundant protein depletion procedure)
5 μL
High-abundance protein depletion for human blood (affinity-based)10 μL
Animal TissueSoft tissue (brain, heart, liver, spleen, lung, kidney, muscle, etc.)10 mg
Tough tissue (hair, cartilage, etc.)200 mg
Suspension/adherent cultured cells (it is crucial to meet the required cell pellet volume) 2×10^6 (10 μL cell pellet)
Body Fluids (most body fluids contain large amount of proteins, so undiluted sample is preferred)Cerebrospinal fluid/Semen/ Follicular Fluid/Saliva/Tear500 μL
Urine10 mL
Breast milk10 μL
Extracted protein sample (solvent buffer reagent components must be provided)Non-detergent containing protein sample (optimal buffer with 6M Urea, preferred protein concentration ≥ 0.5 μg/μL)100 μg
Detergent containing protein sample (including SDS, triton X-100, NP40, CHAPS, etc.)200 μg
*Please contact us for more information.

Detection Details

The Orbitrap Astral mass spectrometer integrates three complementary mass analyzers into a single platform, combining precision, resolution, and speed to deliver outstanding performance and usability.

1. Quadrupole mass analyzer: Enables precise precursor ion selection.

2. Orbitrap mass analyzer: Delivers high-resolution, high dynamic range HRAM (High-Resolution Accurate Mass) spectra.

3. Astral mass analyzer: Provides high-sensitivity detection and rapid acquisition of high dynamic range HRAM spectra at speeds of up to 200 Hz.

Analyzer TypeAstral Mass Analyzer
SensitivitySingle ion detection
HRAM scan rateUp to 200 Hz
Interscan dynamic range>1000 with single microscan
Resolution80,000 at m/z 524
Mass accuracyRMS <5 ppm
Mass rangem/z 40-6,000
Scan modeDIA

Detection Details

The Orbitrap Astral mass spectrometer integrates three complementary mass analyzers into a single platform, combining precision, resolution, and speed to deliver outstanding performance and usability.

1. Quadrupole mass analyzer: Enables precise precursor ion selection.

2. Orbitrap mass analyzer: Delivers high-resolution, high dynamic range HRAM (High-Resolution Accurate Mass) spectra.

3. Astral mass analyzer: Provides high-sensitivity detection and rapid acquisition of high dynamic range HRAM spectra at speeds of up to 200 Hz.

Analyzer TypeAstral Mass Analyzer
SensitivitySingle ion detection
HRAM scan rateUp to 200 Hz
Interscan dynamic range>1000 with single microscan
Resolution80,000 at m/z 524
Mass accuracyRMS <5 ppm
Mass rangem/z 40-6,000
Scan modeDIA

Detection Details

The Orbitrap Astral mass spectrometer integrates three complementary mass analyzers into a single platform, combining precision, resolution, and speed to deliver outstanding performance and usability.

1. Quadrupole mass analyzer: Enables precise precursor ion selection.

2. Orbitrap mass analyzer: Delivers high-resolution, high dynamic range HRAM (High-Resolution Accurate Mass) spectra.

3. Astral mass analyzer: Provides high-sensitivity detection and rapid acquisition of high dynamic range HRAM spectra at speeds of up to 200 Hz.

Analyzer TypeAstral Mass Analyzer
SensitivitySingle ion detection
HRAM scan rateUp to 200 Hz
Interscan dynamic range>1000 with single microscan
Resolution80,000 at m/z 524
Mass accuracyRMS <5 ppm
Mass rangem/z 40-6,000
Scan modeDIA

Detection Details

The Orbitrap Astral mass spectrometer integrates three complementary mass analyzers into a single platform, combining precision, resolution, and speed to deliver outstanding performance and usability.

1. Quadrupole mass analyzer: Enables precise precursor ion selection.

2. Orbitrap mass analyzer: Delivers high-resolution, high dynamic range HRAM (High-Resolution Accurate Mass) spectra.

3. Astral mass analyzer: Provides high-sensitivity detection and rapid acquisition of high dynamic range HRAM spectra at speeds of up to 200 Hz.

Analyzer TypeAstral Mass Analyzer
SensitivitySingle ion detection
HRAM scan rateUp to 200 Hz
Interscan dynamic range>1000 with single microscan
Resolution80,000 at m/z 524
Mass accuracyRMS <5 ppm
Mass rangem/z 40-6,000
Scan modeDIA

Project Workflow

From sample preparation to final data interpretation, every step of the proteomics workflow influences data quality and depth. At Novogene, we apply rigorous quality control throughout the entire process to ensure accurate, reliable, and high-quality proteomics results. The experimental workflow is as follows:

1. Sample Preparation

Protein extraction and cleanup from tissues, cells, body fluids, and so on.

2. Protein Digestion

In-solution or on-beads trypsion digestion into peptides.

3. LC-MSMS detection

Protein identification and sample QC.

4. Database Search & Bioinformatics

Spectra searched in DIA-NN for peptide mapping.

5. Report & Biological insights

Comprehensive reports spanning qualitative and quantitative analysis to in-depth functional enrichment.

Project Workflow

Project Workflow

From sample preparation to final data interpretation, every step of the proteomics workflow influences data quality and depth. At Novogene, we apply rigorous quality control throughout the entire process to ensure accurate, reliable, and high-quality proteomics results. The experimental workflow is as follows:

1. Sample Preparation

Protein extraction and cleanup from tissues, cells, body fluids, and so on.

2. Protein Digestion

In-solution or on-beads trypsion digestion into peptides.

3. LC-MSMS detection

Protein identification and sample QC.

4. Database Search & Bioinformatics

Spectra searched in DIA-NN for peptide mapping.

5. Report & Biological insights

Comprehensive reports spanning qualitative and quantitative analysis to in-depth functional enrichment.

Project Workflow

Project Workflow

From sample preparation to final data interpretation, every step of the proteomics workflow influences data quality and depth. At Novogene, we apply rigorous quality control throughout the entire process to ensure accurate, reliable, and high-quality proteomics results. The experimental workflow is as follows:

1. Sample Preparation

Protein extraction and cleanup from tissues, cells, body fluids, and so on.

2. Protein Digestion

In-solution or on-beads trypsion digestion into peptides.

3. LC-MSMS detection

Protein identification and sample QC.

4. Database Search & Bioinformatics

Spectra searched in DIA-NN for peptide mapping.

5. Report & Biological insights

Comprehensive reports spanning qualitative and quantitative analysis to in-depth functional enrichment.

Project Workflow

Project Workflow

From sample preparation to final data interpretation, every step of the proteomics workflow influences data quality and depth. At Novogene, we apply rigorous quality control throughout the entire process to ensure accurate, reliable, and high-quality proteomics results. The experimental workflow is as follows:

1. Sample Preparation

Protein extraction and cleanup from tissues, cells, body fluids, and so on.

2. Protein Digestion

In-solution or on-beads trypsion digestion into peptides.

3. LC-MSMS detection

Protein identification and sample QC.

4. Database Search & Bioinformatics

Spectra searched in DIA-NN for peptide mapping.

5. Report & Biological insights

Comprehensive reports spanning qualitative and quantitative analysis to in-depth functional enrichment.

Project Workflow

Resources

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Protein Functional Annotation

To label each protein with its potential biological roles

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Differentially Expressed Proteins (DEPs) Analysis

Visualization of DEPs

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Differential Enrichment Analysis

To extract the statistically significant biological themes from DEPs

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GSEA Analysis

Gene Set Enrichment Analysis (GSEA) based on different database, including GO, KEGG.

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PPI Analysis

Protein-protein interaction (PPI) is performed using the StringDB protein interaction database

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Image
Image
1/5
Protein Functional Annotation

To label each protein with its potential biological roles

Image
Image
Image
Image
Image
Image
Image
Image
Image
Image
1/5
Differentially Expressed Proteins (DEPs) Analysis

Visualization of DEPs

Image
Image
Image
Image
Image
Image
1/3
Differential Enrichment Analysis

To extract the statistically significant biological themes from DEPs

Image
Image
1/1
GSEA Analysis

Gene Set Enrichment Analysis (GSEA) based on different database, including GO, KEGG.

Image
Image
1/1
PPI Analysis

Protein-protein interaction (PPI) is performed using the StringDB protein interaction database

Resources

Image
Image
Image
Image
Image
Image
Image
Image
Image
Image
1/5
Protein Functional Annotation

To label each protein with its potential biological roles

Image
Image
Image
Image
Image
Image
Image
Image
Image
Image
1/5
Differentially Expressed Proteins (DEPs) Analysis

Visualization of DEPs

Image
Image
Image
Image
Image
Image
1/3
Differential Enrichment Analysis

To extract the statistically significant biological themes from DEPs

Image
Image
1/1
GSEA Analysis

Gene Set Enrichment Analysis (GSEA) based on different database, including GO, KEGG.

Image
Image
1/1
PPI Analysis

Protein-protein interaction (PPI) is performed using the StringDB protein interaction database

Image
Image
Image
Image
Image
Image
Image
Image
Image
Image
1/5
Protein Functional Annotation

To label each protein with its potential biological roles

Image
Image
Image
Image
Image
Image
Image
Image
Image
Image
1/5
Differentially Expressed Proteins (DEPs) Analysis

Visualization of DEPs

Image
Image
Image
Image
Image
Image
1/3
Differential Enrichment Analysis

To extract the statistically significant biological themes from DEPs

Image
Image
1/1
GSEA Analysis

Gene Set Enrichment Analysis (GSEA) based on different database, including GO, KEGG.

Image
Image
1/1
PPI Analysis

Protein-protein interaction (PPI) is performed using the StringDB protein interaction database

Frequently Asked Questions

How many repeated samples are required?

We strongly recommend a minimum of 3 biological replicates per group, as this is critical for ensuring the validity of subsequent bioinformatics analyses.

What is quality control (QC) workflow for protein samples?

How should I prepare and ship my samples?

What is the typical turnaround time?

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