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高学飞
xgao2019@smu.edu.cn
英语, 中文
广东
南方医科大学
Basic Medical Sciences
  • 2006.08-2011.08 生物化学及分子生物学博士学位:中国科学院广州生物医药与健康研究院
  • 成就:剑桥Sanger研究所高级科学家
  • 2011.09-2018.07 - 英国剑桥Sanger研究所 - 高级科学家
  • 2018.07-2019.08 - 香港大学 - 研究助理教授
  • 2019.09至今 - 南方医科大学 - 教授
人多能干细胞多能性维持及滋养层谱系分化调控
  • SP6 controls human cytotrophoblast fate decisions and trophoblast stem cell establishment by targeting MSX2 regulatory elements., Chen Y, Ye X, Zhong Y, Kang X, Tang Y, Zhu H, Pang C, Ning S, Liang S, Zhang F, Li C, Li J, Gu C, Cheng Y, Kuang Z, Qiu J, Jin J, Luo H, Fu M, Hui HX, Li L, Ruan D, Liu P, Chen X, Sun L, Ai S, Gao X., 2024
  • An optimized culture system for efficient derivation of porcine expanded potential stem cells from preimplantation embryos and by reprogramming somatic cells., Ruan D, Xuan Y, Tam TTK, Li Z, Wang X, Xu S, Herrmann D, Niemann H, Lai L, Gao X, Nowak-Imialek M, Liu P., 2024
  • Establishment of bovine expanded potential stem cells., Zhao L, Gao X, Zheng Y, Wang Z, Zhao G, Ren J, Zhang J, Wu J, Wu B, Chen Y, Sun W, Li Y, Su J, Ding Y, Gao Y, Liu M, Bai X, Sun L, Cao G, Tang F, Bao S, Liu P, Li X., 2021
  • Establishment of Porcine and Human Expanded Potential Stem Cells., Gao X, Nowak-Imialek M, Chen X, Chen D, Herrmann D, Ruan D, Andy Chen CH Andy, Eckersley-Maslin M, Shakil A, Lee YL, Kobayashi T, Ryan D, Tam PL P, Ahmed A, Wu D, Nie T, Pei D, Surani A, Shang Z, Lai L, Yeung SBW, Teichmann S, Niemann H, Liu P., 2019
  • Comparison of TALE Designer Transcription Factors and the CRISPR/dCas9 in Regulation of Gene Expression by Targeting Enhancers., Gao X, Jason CH Tsang, Fortis Gaba, Donghai Wu, Pentao Liu., 2014
  • Reprogramming to Pluripotency Using Designer TALE Transcription Factors Targeting Enhancers., Gao X, Yang J, Tsang JC, Ooi Jolene, Wu D, Liu P., 2013
  • Carnitine palmitoyltransferase 1A prevents fatty acid-induced adipocyte dysfunction through suppression of c-Jun N-terminal kinase., Gao X, Li K, Hui X, Kong X, Sweeney G, Wang Y, Xu A, Teng M, Liu P, Wu D., 2011
  • Enhanced susceptibility of Cpt1c knockout mice to glucose intolerance induced by a high-fat diet involves elevated hepatic gluconeogenesis and decreased skeletal muscle glucose uptake., Gao X, Chen W, Kong XP, Xu AM, Wang ZG, Sweeney G, Wu D., 2009
人多能干细胞 多能性维持 滋养层细胞 谱系特化 命运决定 干细胞 分化 调控 生物学 研究

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