Park, T. S., Huo, J. S., Peters, A., Talbot, C. C., Verma, K., Zimmerlin, L., . . . Zambidis, E. T. (2012). Growth Factor-Activated Stem Cell Circuits and Stromal Signals Cooperatively Accelerate Non-Integrated iPSC Reprogramming of Human Myeloid Progenitors. Public Library of Science.
Styl ChicagoPark, Tea Soon, Jeffrey S. Huo, Ann Peters, C. Conover Talbot, Karan Verma, Ludovic Zimmerlin, Ian M. Kaplan, a Elias T. Zambidis. Growth Factor-Activated Stem Cell Circuits and Stromal Signals Cooperatively Accelerate Non-Integrated IPSC Reprogramming of Human Myeloid Progenitors. Public Library of Science, 2012.
Citace podle MLAPark, Tea Soon, et al. Growth Factor-Activated Stem Cell Circuits and Stromal Signals Cooperatively Accelerate Non-Integrated IPSC Reprogramming of Human Myeloid Progenitors. Public Library of Science, 2012.