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A successful single-cell proteomics workflow hinges on throughput, quantitation, sensitivity, and coverage. In collaboration with the scientific community, Thermo Fisher Scientific innovates solutions that enable comprehensive single-cell proteomics analysis, revealing the full spectrum of cellular diversity. Our recent advancement, the Thermo Scientific Orbitrap Astral Mass Spectrometer, provides the necessary sensitivity and throughput to analyze hundreds of cells per day from various cell populations, types, and states on an individual basis, which generates maximal insights into cell heterogeneity and rare cell types.
Thermo Scientific Orbitrap mass spectrometers are at the forefront of mass spectrometry technology, capable of accurately identifying and quantifying thousands of proteins with over five orders of linear dynamic range and tight coefficients of variation, even at the single-cell level. These instruments are highly sensitive, enabling precise detection of protein differences across individual cells and offering valuable insights into their biological states.
The Orbitrap Astral Mass Spectrometer enables robust, reproducible, rapid, and sensitive deep proteome coverage from low sample amounts.
Thermo Scientific Single-Cell Proteomics Platform meets the pillars of successful single-cell proteomics technology.
What do you get from Thermo Scientific Single-Cell Proteomics Platform.
Accurate and precise quantitation
High confidence with deep proteome coverage and data completeness
High throughput for large number of cells to observe biological insight
Robust platform and method
Thermo Scientific Orbitrap based DIA single-cell proteomics workflows provide sensitivity, quantitative accuracy and precision, in combination with high proteome coverage and data completeness, for high-confidence, high-throughput characterization of individual cells. The workflow requires minimum sample preparation and provides an unbiased approach for identifying diverse proteins from phenotypically distinct cells extracted from complex samples. Also, this workflow is better suited for characterizing proteomes from rare cells.
This setup facilitates cell isolation, imaging, and protein preparation for mass spectrometry analysis using cellenONE. Additionally, it displays the LC-MS configuration and the software needed for data analysis.
This setup allows for cell isolation with the Uno Single Cell Dispenser, although it does not support imaging of the isolated cells. It facilitates cell isolation, imaging, and protein preparation for mass spectrometry analysis, including TMT labeling.
Hela Dilution experiments. 50 pg to 5 ng injected on column and analyzed by Orbitrap Astral MS by either 72 SPD or 50 SPD methods.
"The Orbitrap Astral Zoom MS improves the performance for single-cell proteomics by increasing the depth of coverage for DIA experiments but also by enabling very high throughput experiments through multiplexing with TMTpro to analyze over 2,000 single cells per day."
— Erwin Schoof, Associate Professor, Department of Biotechnology and Biomedicine, Section for Protein Science and Biotherapeutics, Cell Diversity Lab, Technical University of Denmark
"The combination of the pre accumulation, faster acquisition and the low input mode on the Orbitrap Astral Zoom mass spectrometer allows us to approach close to 7000 proteins in single cell experiments"
— Jesper Olsen, Deputy Center Director, Professor, Novo Nordisk Foundation Center for Protein Research, University of Copenhagen
Thermo Scientific TMT multiplexing provides the highest throughput of any single-cell proteomics workflow along with high quantitative precision and accuracy. Additionally, the use of TMT multiplexing enables the use of any Orbitrap based mass spectrometer for single-cell proteomics by boosting the signal of the peptides for detection and sequencing by mass spectrometry.
This configuration with cellenONE for sample preparation, enables cell isolation, imaging and preparation of proteins, including TMT labeling for mass spectrometry analysis. LC-MS configuration and software for data analysis are also shown.
This setup allows for cell isolation with the Uno Single Cell Dispenser, although it does not support imaging of the isolated cells. It also facilitates the preparation of proteins for mass spectrometry analysis. Additionally, it displays the LC-MS configuration and the software needed for data analysis.
"Thanks to Orbitrap MS and TMTpro technology, we can in principle multiplex 18 single cells at the same time. With advanced chromatography, this enables the possibility of running multiple 10,000-cell projects per instrument, per year, leading to real impactful biological insights across life science research."
— Erwin Schoof, Associate Professor, Department of Biotechnology and Biomedicine, Section for Protein Science and Biotherapeutics, Cell Diversity Lab, Technical University of Denmark
Manual sample preparation is not feasible for single-cell proteomics due to limited starting material and the shear number of cells to be analyzed. Automation addresses many of the short comings of single cell sample preparation. From cell sorting and isolation to preparation of proteins for mass spectrometry.
cellenONE® platform combines high accuracy single cell isolation and precision nanoliter reagent dispensing, allowing for miniaturization of single cell proteomics protocols and enabling automated sample preparation for label-free and TMT multiplexing experiments.
The Uno Single Cell Dispenser is an automated benchtop instrument designed for ease of use, efficiency, and precision in single-cell workflows. Allows sample preparation for both label-free and TMT based single-cell experiments.
With the Orbitrap mass spectrometer at the heart of the single-cell proteomics workflow, we can obtain a wealth of information inside every cell.
With an unprecedentedly low detection level, the Thermo Scientific Orbitrap Astral Zoom Mass Spectrometer accesses more proteins from a single cell than ever before. And with the ability to multiplex single cells at a higher throughput, hundreds of single cells can be quantitatively analyzed in a single day, allowing researchers to efficiently and reliably determine the heterogeneity of a cell’s biology, unlocking never-before-seen insights that can revolutionize research.
TMT multiplexing workflow provides the highest throughput for single-cell proteomics. The SPS MS3 method on the Thermo Scientific Orbitrap Ascend MultiOmics Tribrid Mass Spectrometer provides the highest accuracy and precision for TMT-based quantitation throughout wide concentration range. The real-time search acquisition strategy on this platform improves the ratio accuracy for TMT reporter ions, boosts sensitivity and increases total quantified peptides. The Orbitrap Ascend Tribrid MS is also excellent for single-cell proteomics DIA workflow for those researchers want that capability as well.
The single-cell proteomics DIA workflow on the Thermo Scientific Orbitrap Excedion Pro Mass Spectrometer offers research laboratories accurate and precise quantitation, with deep proteome coverage and data completeness. For laboratories wanting to perform TMT based single-cell proteomics workflow, the Thermo Scientific Orbitrap Excedion Pro Mass Spectrometer is versatile enough to handle that as well. TurboTMT intelligent data acquisition mode, a distinctive processing mode utilizing the Phased Spectrum Deconvolution Method (ΦSDM), tailored to enhance the acquisition rate in Thermo Scientific TMTpro 32plex reagent experiments for the Orbitrap Excedion Pro MS.
Thermo Scientific Stellar MS excels in quantifying proteins at low abundance with high sensitivity and technical precision, making it an advantageous for targeting subset of the proteome in a single cell or developing single cell assays.
![]() Thermo Scientific Orbitrap Astral Zoom Mass Spectrometer | ![]() Thermo Scientific Orbitrap Ascend MultiOmics Tribrid Mass Spectrometer | ![]() Thermo Scientific Orbitrap Excedion Pro Mass Spectrometer | |
|---|---|---|---|
| Ideal Workflows | DIA Single-cell proteomics TMT Single-cell proteomics | DIA Single-cell proteomics TMT Single-cell proteomics | DIA Single-cell proteomics |
| Ideal Study | >1000 cells study with TMT <1000 cells study with DIA | >1000 cells study with TMT <500 cells study with DIA | <500 cells study with DIA |
| DIA Single-cell proteomics Throughput | 100 cells/day | 100 cells/day | 100 cells/day |
| TMT Single-cell proteomics Throughput | 500 cells/day | 200 cells/day | 200 cells/day |
| DIA Single-cell proteomics Quantitative Accuracy | ![]() | ![]() | ![]() |
| TMT Single-cell proteomics Quantitative Accuracy | ![]() | ![]() | ![]() |
| DIA Single-cell proteomics Quantitative Precision | ![]() | ![]() | ![]() |
| TMT Single-cell proteomics Quantitative Precision | ![]() | ![]() | ![]() |
| DIA Single-cell proteomics Proteome Coverage | ![]() | ![]() | ![]() |
| TMT Single-cell proteomics Proteome Coverage | ![]() | ![]() | ![]() |
| Single-Cell sensitivity | ![]() | ![]() | ![]() |
= Good | = Better | = Best |
Every cell counts and separations of peptides are crucial in single-cell proteomics. We’ve taken steps to optimize HPLC, column chemistries and differential ion mobility devices to enable studies that require in depth analysis to short high throughout applications.
The Thermo Scientific Vanquish Neo UHPLC System is designed for high-sensitivity LC-MS applications such as single-cell proteomics. It flawlessly integrates with industry-leading Thermo Scientific mass spectrometry portfolio and ESI sources.
The 50 cm µPAC Neo HPLC Columns are designed to get maximum proteome coverage from single-cell to sub nanogram protein digest samples.
The Thermo Scientific FAIMS Pro Duo interface provides enhanced selectivity and sensitivity down to at a low nanogram to single-cell level allowing for deeper proteome coverage.
The Thermo Scientific Tandem Mass Tag (TMT) reagents are designed to increase the level of cell multiplexing. Currently, the TMT enabled workflow provides the highest throughput for single-cell proteomics experiments.
TMTpro 35-plex Label Reagents are designed for the next level of sample multiplexing. TMTpro 35-plex enables multiplexing up to 35 cells, enabling greater throughput for protein identification and quantitative analysis by mass spectrometry.
Optimized for data generated from single-cell proteomics regardless of the workflow undertaken (TMT or DIA).
Thermo Scientific Proteome Discoverer Software offers predefined workflows to support both MS2 and MS3-based TMT quantification. The CHIMERYS™ intelligent search algorithm by MSAID available within Proteome Discoverer software enables processing of DIA data.
Listen to some of the leaders in the field of integrative structural biology discuss how integrative structural biology is making a difference in their work.
Jesper V. Olsen, University of Copenhagen
Discover new methods for single-cell proteomics using the Orbitrap Astral Zoom Mass Spectrometer.
Sophia Steigerwald, Max-Planck Institute
Manuel Matzinger, Proteomics Technology Hub, IMP
Karl Mechtler, Proteomics Technology Hub, IMP
Learn how the latest innovations on Orbitrap Astral Mass Spectrometer are driving breakthroughs in single-cell and deep visual proteomics.
Attend on-demand webinar ›
Erwin Schoof, DTU Proteomics
Learn more about recent innovations in single-cell proteomics. Advances in instrumentation, including the novel Orbitrap Astral MS, and how to use both TMTPro-labeled and label-free approaches.
Fernando Salvato, Thermo Fisher Scientific
Runsheng Zheng, Thermo Fisher Scientific
Hear best practices for performing DIA-based single-cell proteomics using Orbitrap mass spectrometers.
Erwin Schoof, DTU Proteomics
See how a 384-well workflow, using standard off-the-shelf components, allows characterization of single cells to a protein depth of well over 1,000 proteins per cell.
Bogdan Budnik, Wyss Institute at Harvard University
Dr. Budnik will present an LC-MS workflow that allows researchers to perform proteomic and metabolomic analysis on the same type of chromatography simultaneously in parallel. Additionally, transcriptomic and genomic analysis can be added as extra options to get a “multi-omic analysis of the single cell” that captures the full biological state of the cell based on all critical components of cellular expression.
Explore educational resources to support your single-cell proteomics analysis.











