Compounds, Compositions and Methods Comprising Heteroaromatic Derivatives
申请人:Doyle Kevin James
公开号:US20090318429A1
公开(公告)日:2009-12-24
The present invention relates to compositions and methods for treating a disease in an animal, which disease is responsive to inhibiting of functional cystic fibrosis transmembrane conductance regulator (CFTR) polypeptide by administering to a mammal in need thereof an effective amount of a compound defined herein (including those compounds set forth in Tables 1-14 or encompassed by formulas I-XII) or compositions thereof, thereby treating the disease. The present invention particularly, relates to a method of treating diarrhea and polycystic kidney disease.
Compounds, compositions and methods comprising heteroaromatic derivatives
申请人:Doyle Kevin James
公开号:US20100144733A1
公开(公告)日:2010-06-10
The present invention relates to compositions and methods for treating a disease in an animal, which disease is responsive to inhibiting of functional cystic fibrosis transmembrane conductance regulator (CFTR) polypeptide by administering to a mammal in need thereof an effective amount of a compound defined herein (including those compounds set forth in Tables 1-14 or encompassed by formulas I-XII) or compositions thereof, thereby treating the disease. The present invention particularly, relates to a method of treating diarrhea and polycystic kidney disease.
Aromatic Sulfonyl Fluorides Covalently Kinetically Stabilize Transthyretin to Prevent Amyloidogenesis while Affording a Fluorescent Conjugate
作者:Neil P. Grimster、Stephen Connelly、Aleksandra Baranczak、Jiajia Dong、Larissa B. Krasnova、K. Barry Sharpless、Evan T. Powers、Ian A. Wilson、Jeffery W. Kelly
DOI:10.1021/ja311729d
日期:2013.4.17
substituted at the 2 position with an arylsulfonylfluoride and at the 5 position with a substituted aryl known to have high affinity for the inner thyroxine binding subsite of transthyretin (TTR) was conceived of by structure-based design principles and was chemically synthesized. When bound in the thyroxine binding site, most of the arylsulfonylfluorides react rapidly and chemoselectively with