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Plos One|August 21, 2012
Growth factor-activated stem cell circuits and stromal signals cooperatively accelerate non-integrated iPSC reprogramming of human myeloid progenitorsTea Soon Park, Jeffrey S Huo, Ann Peters, et al.Stem Cells and Development|October 7, 2010
Placental perivascular cells for human muscle regenerationTea Soon Park, Manuela Gavina, Chien-Wen Chen, et al.Biorxiv : the Preprint Server for Biology|June 25, 2024
Proteogenomic Reprogramming to a Functional Human Totipotent Stem Cell State via a PARP-DUX4 Regulatory AxisLudovic Zimmerlin, Ariana Angarita, Tea Soon Park, et al.Cell Reports|May 8, 2025
Proteogenomic reprogramming to a functional human blastomere-like stem cell state via a PARP-DUX4 regulatory axisLudovic Zimmerlin, Ariana Angarita, Tea Soon Park, et al.Nature Communications|March 7, 2020
Vascular progenitors generated from tankyrase inhibitor-regulated naïve diabetic human iPSC potentiate efficient revascularization of ischemic retinaTea Soon Park, Ludovic Zimmerlin, Rebecca Evans-Moses, et al.Circulation|October 29, 2013
Vascular progenitors from cord blood-derived induced pluripotent stem cells possess augmented capacity for regenerating ischemic retinal vasculatureTea Soon Park, Imran Bhutto, Ludovic Zimmerlin, et al.Development (Cambridge, England)|September 24, 2016
Tankyrase inhibition promotes a stable human naïve pluripotent state with improved functionalityLudovic Zimmerlin, Tea Soon Park, Jeffrey S Huo, et al.Pageof 3