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原胶原蛋白C蛋白酶的强效选择性非肽类抑制剂。

Potent and selective nonpeptidic inhibitors of procollagen C-proteinase.

作者信息

Fish Paul V, Allan Gillian A, Bailey Simon, Blagg Julian, Butt Richard, Collis Michael G, Greiling Doris, James Kim, Kendall Jackie, McElroy Andrew, McCleverty Dawn, Reed Charlotte, Webster Robert, Whitlock Gavin A

机构信息

Department of Discovery Chemistry, Pfizer Global Research and Development, Sandwich, Kent, CT13 9NJ, United Kingdom.

出版信息

J Med Chem. 2007 Jul 26;50(15):3442-56. doi: 10.1021/jm061010z. Epub 2007 Jun 26.

Abstract

6-Cyclohexyl-N-hydroxy-3-(1,2,4-oxadiazol-5-yl)hexanamides were previously disclosed as inhibitors of procollagen C-proteinase (PCP) culminating in the identification of amide 1. Our objective was to discover a second inhibitor that would have improved affinity for PCP and to optimize properties for transepidermal delivery (TED) to intact skin. Further investigation of this template identified a number of potent PCP inhibitors (IC50 values of 2-6 nM) with improved TED flux. Sulfonamide 56 had excellent PCP enzyme activity when measured with a peptide substrate (Ki 8.7 nM) or with the endogenous substrate procollagen (IC50 3.4 nM) and demonstrates excellent selectivity over MMPs involved in wound healing (>10 000-fold). In the fibroplasia model, 56 inhibited deposition of insoluble collagen by 76 +/- 2% at 10 microM and was very effective at penetrating human skin in vitro with a TED flux of 1.5 microg/cm2/h, which compares favorably with values for agents that are known to penetrate skin well in vivo. Based on this profile, 56 (UK-421,045) was selected as a candidate for further preclinical evaluation as a topically applied, dermal anti-scarring agent.

摘要

6-环己基-N-羟基-3-(1,2,4-恶二唑-5-基)己酰胺先前已作为前胶原C蛋白酶(PCP)抑制剂被披露,最终确定了酰胺1。我们的目标是发现第二种对PCP具有更高亲和力的抑制剂,并优化其经皮递送(TED)至完整皮肤的性能。对该模板的进一步研究确定了一些具有改善的TED通量的强效PCP抑制剂(IC50值为2-6 nM)。当用肽底物(Ki 8.7 nM)或内源性底物前胶原(IC50 3.4 nM)测量时,磺酰胺56具有优异的PCP酶活性,并对参与伤口愈合的基质金属蛋白酶表现出优异的选择性(>10000倍)。在纤维增生模型中,56在10 microM时抑制不溶性胶原的沉积达76±2%,并且在体外以1.5 microg/cm2/h的TED通量非常有效地穿透人皮肤,这与已知在体内能很好穿透皮肤的药物的值相比具有优势。基于此特性,56(UK-421,045)被选为作为局部应用的皮肤抗瘢痕形成剂进行进一步临床前评估的候选药物。

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