Shifeng Pan
New York University
Network
Latest external collaboration on country level. Dive into details by clicking on the dots.
Publication
Featured researches published by Shifeng Pan.
Tetrahedron Letters | 2002
Junbiao Chang; Kang Zhao; Shifeng Pan
The Schiff base derived from the condensation of o-aminophenol with benzaldehydes was induced to undergo oxidative cyclization in the presence of DDQ. The resulting 2-arylbenzoxazoles were separated from the reduced DDQ byproduct by treatment of reaction mixture with a strongly basic ion-exchange resin. The applicability of this chemistry to spatially separate library synthesis is demonstrated by the preparation of a 352-member library.
Journal of Medicinal Chemistry | 2014
Dean P. Phillips; Wenqi Gao; Yang Yang; Guobao Zhang; Isabelle K. Lerario; Thomas Lau; Jiqing Jiang; Xia Wang; Deborah G. Nguyen; B. Ganesh Bhat; Carol Trotter; Heather Sullivan; Gustav Welzel; Jannine Landry; Yali Chen; Sean B. Joseph; Chun Li; W. Perry Gordon; Wendy Richmond; Kevin Johnson; Angela Bretz; Badry Bursulaya; Shifeng Pan; Peter McNamara; H. Martin Seidel
Activation of the G-protein coupled receptor (GPCR) Takeda G-protein receptor 5 (TGR5), also known as G-protein bile acid receptor 1 (GPBAR1), has been shown to play a key role in pathways associated with diabetes, metabolic syndrome, and autoimmune disease. Nipecotamide 5 was identified as an attractive starting point after a high-throughput screen (HTS) for receptor agonists. A comprehensive hit-to-lead effort culminated in the discovery of 45h as a potent, selective, and bioavailable TGR5 agonist to test in preclinical metabolic disease models. In genetically obese mice (ob/ob), 45h was as effective as a dipeptidyl peptidase-4 (DPP-4) inhibitor at reducing peak glucose levels in an acute oral glucose tolerance test (OGTT), but this effect was lost upon chronic dosing.
ACS Medicinal Chemistry Letters | 2016
Dai Cheng; Jun Liu; Dong Han; Guobao Zhang; Wenqi Gao; Mindy H. Hsieh; Nicholas Ng; Shailaja Kasibhatla; Celin Tompkins; Jie Li; Auzon Steffy; Fangxian Sun; Chun Li; H. Martin Seidel; Jennifer L. Harris; Shifeng Pan
Blockade of aberrant Wnt signaling is an attractive therapeutic approach in multiple cancers. We developed and performed a cellular high-throughput screen for inhibitors of Wnt secretion and pathway activation. A lead structure (GNF-1331) was identified from the screen. Further studies identified the molecular target of GNF-1331 as Porcupine, a membrane bound O-acyl transferase. Structure-activity relationship studies led to the discovery of a novel series of potent and selective Porcupine inhibitors. Compound 19, GNF-6231, demonstrated excellent pathway inhibition and induced robust antitumor efficacy in a mouse MMTV-WNT1 xenograft tumor model.
Tetrahedron Letters | 2011
Yang Yang; Dean P. Phillips; Shifeng Pan
Journal of Organic Chemistry | 1999
Shifeng Pan; Jianwu Wang; Kang Zhao
Archive | 2009
Dai Cheng; Dong Han; Guobao Zhang; Yongqin Wan; Yun Feng Xie; Jiqing Jiang; Wenqi Gao; Shifeng Pan
Archive | 2011
Wenqi Gao; Thomas Lau; Shifeng Pan; Dean P. Phillips; Xia Wang; Yang Yang
Archive | 2008
Badry Bursulaya; Dai Cheng; Jiqing Jiang; Donald S. Karanewsky; Yi Liu; Shifeng Pan; Yongqin Wan; Xia Wang; Yun Feng Xie; Yang Yang
Helvetica Chimica Acta | 2004
Songqing Wang; Junbiao Chang; Shifeng Pan; Kang Zhao
Archive | 2009
Dai Cheng; Dong Han; Guobao Zhang; Yongqin Wan; Yun Feng Xie; Jiqing Jiang; Wenqi Gao; Shifeng Pan