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Methods in Molecular Biology (Clifton, N.J.)|May 15, 2016
Microfluidic-Based Live-Cell Analysis of NK Cell Migration In VitroSaravanan Nandagopal, Francis Lin, Sam K P KungEuropean Journal of Immunology|June 24, 2014
Microfluidic-based, live-cell analysis allows assessment of NK-cell migration in response to crosstalk with dendritic cellsSajid Mahmood, Saravanan Nandagopal, Ibrahim Sow, et al.Plos One|April 6, 2011
Combinatorial guidance by CCR7 ligands for T lymphocytes migration in co-existing chemokine fieldsSaravanan Nandagopal, Dan Wu, Francis LinMicrosystems & Nanoengineering|July 5, 2026
From single cell analysis to 3D micro physiological systems: microfluidic tools integrating cancer cell targets for delineating natural killer cell biologyMaria V Hangad, Heqing Ma, Sam K P Kung, et al.Lab on a Chip|March 25, 2011
Microfluidics for food, agriculture and biosystems industriesSuresh Neethirajan, Isao Kobayashi, Mitsutoshi Nakajima, et al.Methods in Enzymology|January 18, 2020
Applications of microfluidic devices in advancing NK-cell migration studiesXiaoou Ren, Abdulaziz Alamri, Jolly Hipolito, et al.Toxins|May 7, 2013
Effects of Clostridium difficile toxin A and B on human T lymphocyte migrationDan Wu, Antony George Joyee, Saravanan Nandagopal, et al.Plos One|March 6, 2013
The tandem PH domain-containing protein 2 (TAPP2) regulates chemokine-induced cytoskeletal reorganization and malignant B cell migrationHongzhao Li, Sen Hou, Xun Wu, et al.Methods in Molecular Biology (Clifton, N.J.)|December 25, 2009
Introduction of shRNAs into primary NK cells with lentivirusSam K P KungLab on a Chip|February 18, 2011
Activated T lymphocytes migrate toward the cathode of DC electric fields in microfluidic devicesJing Li, Saravanan Nandagopal, Dan Wu, et al.Pageof 16