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纳摩尔效力的嘧啶并吡咯并喹喔啉二酮CFTR抑制剂可减小多囊肾病模型中的囊肿大小。

Nanomolar potency pyrimido-pyrrolo-quinoxalinedione CFTR inhibitor reduces cyst size in a polycystic kidney disease model.

作者信息

Tradtrantip Lukmanee, Sonawane N D, Namkung Wan, Verkman A S

机构信息

Department of Medicine, University of California, San Francisco, California 94143-0521, USA.

出版信息

J Med Chem. 2009 Oct 22;52(20):6447-55. doi: 10.1021/jm9009873.

Abstract

Inhibitors of the cystic fibrosis transmembrane conductance regulator (CFTR) chloride channel are predicted to slow cyst enlargement in polycystic kidney disease and reduce intestinal fluid loss in secretory diarrheas. Screening of approximately 110000 small synthetic and natural compounds for inhibition of halide influx in CFTR-expressing epithelial cells yielded a new class of pyrimido-pyrrolo-quinoxalinedione (PPQ) CFTR inhibitors. Testing of 347 analogues established structure-activity relationships. The most potent compound, 7,9-dimethyl-11-phenyl-6-(5-methylfuran-2-yl)-5,6-dihydro-pyrimido[4',5'-3,4]pyrrolo[1,2-a]quinoxaline-8,10-(7H,9H)-dione, PPQ-102, completely inhibited CFTR chloride current with IC(50) approximately 90 nM. The PPQs, unlike prior CFTR inhibitors, are uncharged at physiological pH, and therefore not subject to membrane potential-dependent cellular partitioning or block efficiency. Patch-clamp analysis confirmed voltage-independent CFTR inhibition by PPQ-102 and showed stabilization of the channel closed state. PPQ-102 prevented cyst expansion and reduced the size of preformed cysts in a neonatal kidney organ culture model of polycystic kidney disease. PPQ-102 is the most potent CFTR inhibitor identified to date.

摘要

预计囊性纤维化跨膜传导调节因子(CFTR)氯离子通道抑制剂可减缓多囊肾病中囊肿的增大,并减少分泌性腹泻时肠道液体的流失。对约110000种合成小分子化合物和天然化合物进行筛选,以检测其对表达CFTR的上皮细胞中卤化物内流的抑制作用,结果产生了一类新的嘧啶并吡咯并喹喔啉二酮(PPQ)CFTR抑制剂。对347种类似物进行测试,确定了构效关系。最有效的化合物7,9-二甲基-11-苯基-6-(5-甲基呋喃-2-基)-5,6-二氢-嘧啶并[4',5'-3,4]吡咯并[1,2-a]喹喔啉-8,10-(7H,9H)-二酮,即PPQ-102,能以约90 nM的半数抑制浓度(IC50)完全抑制CFTR氯离子电流。与之前的CFTR抑制剂不同,PPQ在生理pH值下呈电中性,因此不受膜电位依赖性细胞分配或阻断效率的影响。膜片钳分析证实PPQ-102对CFTR的抑制不依赖电压,并显示通道关闭状态的稳定。在多囊肾病的新生肾器官培养模型中,PPQ-102可防止囊肿扩大并减小预先形成的囊肿的大小。PPQ-102是迄今为止鉴定出的最有效的CFTR抑制剂。

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