Nanoproteomics comes of age
暂无分享,去创建一个
Paul D Piehowski | Ying Zhu | Wei-Jun Qian | Ryan T Kelly | W. Qian | P. Piehowski | Ying Zhu | R. Kelly
[1] Ioan Marginean,et al. Achieving 50% ionization efficiency in subambient pressure ionization with nanoelectrospray. , 2010, Analytical chemistry.
[2] Ryan T Kelly,et al. Subambient pressure ionization with nanoelectrospray source and interface for improved sensitivity in mass spectrometry. , 2008, Analytical chemistry.
[3] Nikola Tolić,et al. Ultrasensitive proteomics using high-efficiency on-line micro-SPE-nanoLC-nanoESI MS and MS/MS. , 2004, Analytical chemistry.
[4] Paul D Piehowski,et al. Subnanogram proteomics: impact of LC column selection, MS instrumentation and data analysis strategy on proteome coverage for trace samples. , 2017, International journal of mass spectrometry.
[5] Richard D. Smith,et al. Nanoscale proteomics : Liquid chromatography-mass spectrometry , 2004 .
[6] Shashi K Murthy,et al. An Integrated Platform for Isolation, Processing, and Mass Spectrometry-based Proteomic Profiling of Rare Cells in Whole Blood* , 2015, Molecular & Cellular Proteomics.
[7] Wei-Jun Qian,et al. Advances in microscale separations towards nanoproteomics applications. , 2017, Journal of chromatography. A.
[8] I. Fournier,et al. NanoLC-MS coupling of liquid microjunction microextraction for on-tissue proteomic analysis. , 2017, Biochimica et biophysica acta. Proteins and proteomics.
[9] Peng Wang,et al. Development of mass spectrometry-based shotgun method for proteome analysis of 500 to 5000 cancer cells. , 2010, Analytical chemistry.
[10] M. Wilm,et al. Analytical properties of the nanoelectrospray ion source. , 1996, Analytical chemistry.
[11] R. Caprioli,et al. Enhanced Spatially Resolved Proteomics Using On-Tissue Hydrogel-Mediated Protein Digestion. , 2017, Analytical chemistry.
[12] Albert J R Heck,et al. High-sensitivity Orbitrap mass analysis of intact macromolecular assemblies , 2012, Nature Methods.
[13] D. Figeys,et al. The proteomic reactor: a microfluidic device for processing minute amounts of protein prior to mass spectrometry analysis. , 2006, Journal of proteome research.
[14] Ronald J. Moore,et al. Spatially Resolved Proteome Mapping of Laser Capture Microdissected Tissue with Automated Sample Transfer to Nanodroplets* , 2018, Molecular & Cellular Proteomics.
[15] Ronald J. Moore,et al. Proteomic Analysis of Single Mammalian Cells Enabled by Microfluidic Nanodroplet Sample Preparation and Ultrasensitive NanoLC-MS. , 2018, Angewandte Chemie.
[16] Li Li,et al. Rare Cell Proteomic Reactor Applied to Stable Isotope Labeling by Amino Acids in Cell Culture (SILAC)-based Quantitative Proteomics Study of Human Embryonic Stem Cell Differentiation* , 2010, Molecular & Cellular Proteomics.
[17] Jüergen Cox,et al. The MaxQuant computational platform for mass spectrometry-based shotgun proteomics , 2016, Nature Protocols.
[18] L. McDonnell,et al. Set of Novel Automated Quantitative Microproteomics Protocols for Small Sample Amounts and Its Application to Kidney Tissue Substructures. , 2016, Journal of proteome research.
[19] Qiang Hu,et al. IonStar enables high-precision, low-missing-data proteomics quantification in large biological cohorts , 2018, Proceedings of the National Academy of Sciences.
[20] Ruedi Aebersold,et al. Mass-spectrometric exploration of proteome structure and function , 2016, Nature.
[21] Tao Liu,et al. Targeted Quantification of Phosphorylation Dynamics in the Context of EGFR-MAPK Pathway. , 2018, Analytical chemistry.
[22] E. Petricoin,et al. Laser Capture Microdissection , 1996, Science.
[23] M. Karas,et al. Effect of different solution flow rates on analyte ion signals in nano-ESI MS, or: when does ESI turn into nano-ESI? , 2003, Journal of the American Society for Mass Spectrometry.
[24] Liangliang Sun,et al. Ultrasensitive and fast bottom-up analysis of femtogram amounts of complex proteome digests. , 2013, Angewandte Chemie.
[25] Gordon A Anderson,et al. Ultra-High Resolution Ion Mobility Separations Utilizing Traveling Waves in a 13 m Serpentine Path Length Structures for Lossless Ion Manipulations Module. , 2016, Analytical chemistry.
[26] Jeroen Krijgsveld,et al. Ultrasensitive proteome analysis using paramagnetic bead technology , 2014, Molecular systems biology.
[27] M. Mann,et al. The coming age of complete, accurate, and ubiquitous proteomes. , 2013, Molecular cell.
[28] Ryan T Kelly,et al. The ion funnel: theory, implementations, and applications. , 2009, Mass spectrometry reviews.
[29] M. Wilm,et al. Electrospray and Taylor-Cone theory, Dole's beam of macromolecules at last? , 1994 .
[30] G. Anderson,et al. Nanoscale proteomics , 2004, Analytical and bioanalytical chemistry.
[31] L. F. Waanders,et al. Quantitative proteomic analysis of single pancreatic islets , 2009, Proceedings of the National Academy of Sciences.
[32] Paul D Piehowski,et al. SNaPP: Simplified Nanoproteomics Platform for Reproducible Global Proteomic Analysis of Nanogram Protein Quantities. , 2016, Endocrinology.
[33] A. Makarov,et al. Orbitrap mass spectrometry. , 2013, Analytical chemistry.
[34] Subash Adhikari,et al. Simple and Integrated Spintip-Based Technology Applied for Deep Proteome Profiling. , 2016, Analytical chemistry.
[35] Sridhar Ramaswamy,et al. RNA-Seq of single prostate CTCs implicates noncanonical Wnt signaling in antiandrogen resistance , 2015, Science.
[36] G A Anderson,et al. An ion funnel interface for improved ion focusing and sensitivity using electrospray ionization mass spectrometry. , 1998, Analytical chemistry.
[37] Ronald J Moore,et al. Development and evaluation of a micro- and nanoscale proteomic sample preparation method. , 2005, Journal of proteome research.
[38] H. Clevers,et al. Highly sensitive proteome analysis of FACS-sorted adult colon stem cells. , 2011, Journal of proteome research.
[39] N. Kelleher,et al. Top Down proteomics: facts and perspectives. , 2014, Biochemical and biophysical research communications.
[40] Christopher S. Hughes,et al. Identification of Maturation-Specific Proteins by Single-Cell Proteomics of Human Oocytes , 2016, Molecular & Cellular Proteomics.
[41] Xiangmin Zhang,et al. Ultrasensitive Proteome Profiling for 100 Living Cells by Direct Cell Injection, Online Digestion and Nano-LC-MS/MS Analysis. , 2015, Analytical chemistry.
[42] J. Jänis,et al. Microscale immobilized enzyme reactors in proteomics: latest developments. , 2014, Journal of chromatography. A.
[43] A. Makarov,et al. Dynamics of ions of intact proteins in the Orbitrap mass analyzer , 2009, Journal of the American Society for Mass Spectrometry.
[44] Ronald J. Moore,et al. Nanodroplet processing platform for deep and quantitative proteome profiling of 10–100 mammalian cells , 2018, Nature Communications.
[45] James P. Carson,et al. Spatially-Resolved Proteomics: Rapid Quantitative Analysis of Laser Capture Microdissected Alveolar Tissue Samples , 2016, Scientific Reports.
[46] Henrik Zetterberg,et al. Combined tissue and fluid proteomics with Tandem Mass Tags to identify low-abundance protein biomarkers of disease in peripheral body fluid: An Alzheimer's Disease case study. , 2017, Rapid communications in mass spectrometry : RCM.
[47] Richard D. Smith,et al. Proteomic analyses using an accurate mass and time tag strategy. , 2004, BioTechniques.
[48] N. Slavov,et al. SCoPE-MS: mass spectrometry of single mammalian cells quantifies proteome heterogeneity during cell differentiation , 2017, Genome Biology.
[49] Aleksandra A. Kolodziejczyk,et al. The technology and biology of single-cell RNA sequencing. , 2015, Molecular cell.