Rong Fan, Ph.D.

Affiliations: 
2001-2006 University of California, Berkeley, Berkeley, CA, United States 
 2010- Biomedical Engineering Yale University, New Haven, CT 
Area:
Materials Chemistry, Biomedical Engineering
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"Rong Fan"
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SNBCP
Cross-listing: BME Tree

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Publications

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Bai Z, Deng Y, Kim D, et al. (2020) An Integrated Dielectrophoresis -Trapping and Nanowell Transfer Approach to Enable Double-Sub-Poisson Single-Cell RNA-Sequencing. Acs Nano
Finck A, Fan R. (2020) Single-Cell Cytokine Analysis to Characterize CAR-T Cell Activation. Methods in Molecular Biology (Clifton, N.J.). 2097: 67-81
Chen Z, Lu Y, Zhang K, et al. (2019) Multiplexed, Sequential Secretion Analysis of the Same Single Cells Reveals Distinct Effector Response Dynamics Dependent on the Initial Basal State. Advanced Science (Weinheim, Baden-Wurttemberg, Germany). 6: 1801361
Xiao Y, Kim D, Dura B, et al. (2019) Ex vivo Dynamics of Human Glioblastoma Cells in a Microvasculature-on-a-Chip System Correlates with Tumor Heterogeneity and Subtypes. Advanced Science (Weinheim, Baden-Wurttemberg, Germany). 6: 1801531
Chen Z, Chen JJ, Fan R. (2019) Single-Cell Protein Secretion Detection and Profiling. Annual Review of Analytical Chemistry (Palo Alto, Calif.)
Wang N, Lu Y, Chen Z, et al. (2019) Multiplexed PCR-Free Detection of MicroRNAs in Single Cancer Cells Using a DNA-Barcoded Microtrough Array Chip. Micromachines. 10
Deng Y, Finck A, Fan R. (2019) Single-Cell Omics Analyses Enabled by Microchip Technologies. Annual Review of Biomedical Engineering
Codina A, Renauer PA, Wang G, et al. (2019) Convergent Identification and Interrogation of Tumor-Intrinsic Factors that Modulate Cancer Immunity In Vivo. Cell Systems
Chen Z, Lu Y, Zhang K, et al. (2019) Single‐Cell Cytokine Assays: Multiplexed, Sequential Secretion Analysis of the Same Single Cells Reveals Distinct Effector Response Dynamics Dependent on the Initial Basal State (Adv. Sci. 9/2019) Advanced Science. 6: 1970055
Dura B, Choi JY, Zhang K, et al. (2018) scFTD-seq: freeze-thaw lysis based, portable approach toward highly distributed single-cell 3' mRNA profiling. Nucleic Acids Research
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