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Author
- Burnum-Johnson, Kristin E1
- Conrads, Thomas P1
- Drake, Richard R1
- Herr, Amy E1
- Iyengar, Ravi1
- Kelleher, Neil L1
- Kelly, Ryan T1
- Lundberg, Emma1
- MacCoss, Michael J1
- Naba, Alexandra1
- Nolan, Garry P1
- Pevzner, Pavel A1
- Rodland, Karin D1
- Sechi, Salvatore1
- Spraggins, Jeffrey M1
- van Eyk, Jennifer E1
- Vidal, Marc1
- Vogel, Christine1
- Walt, David R1
Keyword
- single-cell biology2
- automated preparation in one pot for trace samples1
- autoPOTS1
- biotechnology1
- data pipelines1
- data-independent acquisition1
- DIA1
- ECM1
- extracellular matrix1
- high-throughput proteomics1
- HuBMAP1
- Human BioMolecular Atlas Program1
- mass spectrometry1
- minimal ProteOmic sample Preparation1
- mPOP1
- MS1
- multiplexed mass-spectrometry1
- nano-ProteOmic sample Preparation1
- nPOP1
- post-translational modification1
- proteins1
- proteomics1
- PTM1
- SCoPE-MS1
- Single Cell ProtEomics by MS1
Reviews & Perspectives
2 Results
- PerspectiveOpen Access
New Views of Old Proteins: Clarifying the Enigmatic Proteome
Molecular & Cellular ProteomicsVol. 21Issue 7100254Published online: May 30, 2022- Kristin E. Burnum-Johnson
- Thomas P. Conrads
- Richard R. Drake
- Amy E. Herr
- Ravi Iyengar
- Ryan T. Kelly
- and others
Cited in Scopus: 0In Brief Capturing the biology of proteins will require improved technologies to readout their composition in space and time. Developing these improved technologies presents a major opportunity for biomedical research. How might we proceed in the decades ahead? - PerspectiveOpen Access
Scaling Up Single-Cell Proteomics
Molecular & Cellular ProteomicsVol. 21Issue 1100179Published online: November 19, 2021- Nikolai Slavov
Cited in Scopus: 13In Brief Single-cell proteomics will drive the next wave of single-cell biology. This requires broad adoption of existing methods, the application of rigorous quality control standards, and the continuous advancement of the technology. The advancement will be driven by numerous innovations, including highly parallelized analysis, and will increase the throughput, quantitative accuracy, and the accessibility of the single-cell proteomics.