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3篇 您的检索式:作者名="Fong Cheng Pan"
    题名 作者 年代 出处 被引量
1Identification of Sox9-Dependent Acinar-to-Ductal Reprogramming as the Principal Mechanism for Initiation of Pancreatic Ductal Adenocarcinoma显示文摘Janel L. Kopp Guido von Figura Erin Mayes Fen-Fen Liu Claire L. Dubois John P. Morris Fong Cheng Pan Haruhiko Akiyama Christopher V.E. Wright Kristin Jensen Matthias Hebrok Maike Sander 2012Cancer Cell2012,,6:2
2Blocking Neuropilin-1 Function Has an Additive Effect with Anti-VEGF to Inhibit Tumor Growth显示文摘Qi Pan Yvan Chanthery Wei-Ching Liang Scott Stawicki Judy Mak Nisha Rathore Raymond K. Tong Joe Kowalski Sharon Fong Yee Glenn Pacheco Sarajane Ross Zhiyong Cheng Jennifer Le Couter Greg Plowman Franklin Peale Alexander W. Koch Yan Wu Anil Bagri Marc Tess 2007Cancer Cell2007,,1:1
3Modeling endodermal organ development and diseases using human pluripotent stem cell-derived organoids显示文摘Recent advances in development of protocols for directed differentiation from human pluripotent stem cells(hPSCs)to defined lineages,in combination with 3D organoid technology,have facilitated the generation of various endoderm-derived organoids for in vitro modeling of human gastrointestinal development and associated diseases.In this review,we discuss current state-ofthe-art strategies for generating hPSC-derived endodermal organoids including stomach,liver,pancreatic,small intestine,and colonic organoids.We also review the advantages of using this system to model various human diseases and evaluate the shortcomings of this technology.Finally,we emphasize how other technologies,such as genome editing and bioengineering,can be incorporated into the 3D hPSC-organoid models to generate even more robust and powerful platforms for understanding human organ development and disease modeling.Fong Cheng Pan Todd Evans Shuibing Chen 2020Journal of Molecular Cell Biology2020,12,8:0
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