Young Shik Shin, Ph.D.

2004-2011 Bioengineering California Institute of Technology, Pasadena, CA 
"Young Shik Shin"
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Kravchenko-Balasha N, Shin YS, Sutherland A, et al. (2016) Intercellular signaling through secreted proteins induces free-energy gradient-directed cell movement. Proceedings of the National Academy of Sciences of the United States of America
Poovathingal SK, Kravchenko-Balasha N, Shin YS, et al. (2016) Critical Points in Tumorigenesis: A Carcinogen-Initiated Phase Transition Analyzed via Single-Cell Proteomics. Small (Weinheim An Der Bergstrasse, Germany)
Xue M, Wei W, Su Y, et al. (2015) Chemical methods for the simultaneous quantitation of metabolites and proteins from single cells. Journal of the American Chemical Society. 137: 4066-9
Yu J, Zhou J, Sutherland A, et al. (2014) Microfluidics-based single-cell functional proteomics for fundamental and applied biomedical applications. Annual Review of Analytical Chemistry (Palo Alto, Calif.). 7: 275-95
Wei W, Shin YS, Ma C, et al. (2013) Microchip platforms for multiplex single-cell functional proteomics with applications to immunology and cancer research. Genome Medicine. 5: 75
Wei W, Shi Q, Remacle F, et al. (2013) Hypoxia induces a phase transition within a kinase signaling network in cancer cells. Proceedings of the National Academy of Sciences of the United States of America. 110: E1352-60
Wang J, Tham D, Wei W, et al. (2012) Quantitating cell-cell interaction functions with applications to glioblastoma multiforme cancer cells. Nano Letters. 12: 6101-6
Shin YS, Choi TS, Kim H, et al. (2012) A microfluidic-based bubble generation platform enables analysis of physical property change in phospholipid surfactant layers by interfacial ozone reaction. Lab On a Chip. 12: 5243-8
Shi Q, Qin L, Wei W, et al. (2012) Single-cell proteomic chip for profiling intracellular signaling pathways in single tumor cells. Proceedings of the National Academy of Sciences of the United States of America. 109: 419-24
Ahmad H, Sutherland A, Shin YS, et al. (2011) A robotics platform for automated batch fabrication of high density, microfluidics-based DNA microarrays, with applications to single cell, multiplex assays of secreted proteins. The Review of Scientific Instruments. 82: 094301
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