New mass spectrometry technologies contributing towards comprehensive and high throughput omics analyses of single cells
Abstract
We provide a vision for integrating pioneering mass spectrometry technologies for future applications in single cell analysis.
- Authors:
-
- Earth and Biological Sciences Directorate, Pacific Northwest National Laboratory, Richland, USA
- Earth and Biological Sciences Directorate, Pacific Northwest National Laboratory, Richland, USA, Department of Chemistry and Biochemistry
- Publication Date:
- Sponsoring Org.:
- USDOE
- OSTI Identifier:
- 1484316
- Grant/Contract Number:
- PNNL LDRD Program Microbiomes in Transition
- Resource Type:
- Publisher's Accepted Manuscript
- Journal Name:
- Analyst
- Additional Journal Information:
- Journal Name: Analyst Journal Volume: 144 Journal Issue: 3; Journal ID: ISSN 0003-2654
- Publisher:
- Royal Society of Chemistry (RSC)
- Country of Publication:
- United Kingdom
- Language:
- English
Citation Formats
Couvillion, Sneha P., Zhu, Ying, Nagy, Gabe, Adkins, Joshua N., Ansong, Charles, Renslow, Ryan S., Piehowski, Paul D., Ibrahim, Yehia M., Kelly, Ryan T., and Metz, Thomas O. New mass spectrometry technologies contributing towards comprehensive and high throughput omics analyses of single cells. United Kingdom: N. p., 2019.
Web. doi:10.1039/C8AN01574K.
Couvillion, Sneha P., Zhu, Ying, Nagy, Gabe, Adkins, Joshua N., Ansong, Charles, Renslow, Ryan S., Piehowski, Paul D., Ibrahim, Yehia M., Kelly, Ryan T., & Metz, Thomas O. New mass spectrometry technologies contributing towards comprehensive and high throughput omics analyses of single cells. United Kingdom. https://doi.org/10.1039/C8AN01574K
Couvillion, Sneha P., Zhu, Ying, Nagy, Gabe, Adkins, Joshua N., Ansong, Charles, Renslow, Ryan S., Piehowski, Paul D., Ibrahim, Yehia M., Kelly, Ryan T., and Metz, Thomas O. Mon .
"New mass spectrometry technologies contributing towards comprehensive and high throughput omics analyses of single cells". United Kingdom. https://doi.org/10.1039/C8AN01574K.
@article{osti_1484316,
title = {New mass spectrometry technologies contributing towards comprehensive and high throughput omics analyses of single cells},
author = {Couvillion, Sneha P. and Zhu, Ying and Nagy, Gabe and Adkins, Joshua N. and Ansong, Charles and Renslow, Ryan S. and Piehowski, Paul D. and Ibrahim, Yehia M. and Kelly, Ryan T. and Metz, Thomas O.},
abstractNote = {We provide a vision for integrating pioneering mass spectrometry technologies for future applications in single cell analysis.},
doi = {10.1039/C8AN01574K},
journal = {Analyst},
number = 3,
volume = 144,
place = {United Kingdom},
year = {Mon Jan 28 00:00:00 EST 2019},
month = {Mon Jan 28 00:00:00 EST 2019}
}
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https://doi.org/10.1039/C8AN01574K
https://doi.org/10.1039/C8AN01574K
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Cited by: 53 works
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Compression Ratio Ion Mobility Programming (CRIMP) Accumulation and Compression of Billions of Ions for Ion Mobility-Mass Spectrometry Using Traveling Waves in Structures for Lossless Ion Manipulations (SLIM)
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- Analytical Chemistry, Vol. 89, Issue 12
Development and Evaluation of a Micro- and Nanoscale Proteomic Sample Preparation Method
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- Journal of Proteome Research, Vol. 4, Issue 6
Spatially Resolved Proteome Mapping of Laser Capture Microdissected Tissue with Automated Sample Transfer to Nanodroplets
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Single Cell Genomics: Advances and Future Perspectives
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Development of Mass Spectrometry-Based Shotgun Method for Proteome Analysis of 500 to 5000 Cancer Cells
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Ultrasensitive proteome analysis using paramagnetic bead technology
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Glycan analysis by ion mobility-mass spectrometry and gas-phase spectroscopy
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Multiplexed Affinity-Based Separation of Proteins and Cells Using Inertial Microfluidics
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Proposed minimum reporting standards for chemical analysis: Chemical Analysis Working Group (CAWG) Metabolomics Standards Initiative (MSI)
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21 Tesla FT-ICR Mass Spectrometer for Ultrahigh-Resolution Analysis of Complex Organic Mixtures
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Training, Selection, and Robust Calibration of Retention Time Models for Targeted Proteomics
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Combining Ion Mobility and Cryogenic Spectroscopy for Structural and Analytical Studies of Biomolecular Ions
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A Study of Electrospray Ionization Emitters with Differing Geometries with Respect to Flow Rate and Electrospray Voltage
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PredRet: Prediction of Retention Time by Direct Mapping between Multiple Chromatographic Systems
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The potential of Ion Mobility Mass Spectrometry for high-throughput and high-resolution lipidomics
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Unraveling the unknown areas of the human metabolome: the role of infrared ion spectroscopy
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An Interlaboratory Evaluation of Drift Tube Ion Mobility–Mass Spectrometry Collision Cross Section Measurements
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