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一些巴比妥酸和 1,3-二甲基巴比妥酸衍生物的设计与合成:潜在 PARP1 抑制剂的非经典支架。

Design and synthesis of some barbituric and 1,3-dimethylbarbituric acid derivatives: A non-classical scaffold for potential PARP1 inhibitors.

机构信息

Pharmaceutical Chemistry Department, Faculty of Pharmacy, Cairo University, Cairo 11562, Egypt.

Department of Pharmaceutical Chemistry, Faculty of Pharmacy, Heliopolis University for Sustainable Development, Cairo 11777, Egypt.

出版信息

Bioorg Chem. 2020 Nov;104:104198. doi: 10.1016/j.bioorg.2020.104198. Epub 2020 Aug 28.

Abstract

Six series based on barbituric acid 5a-e, 10a-d; thiobarbituric acid 6a-e, 11a-d and 1,3-dimethylbarbituric acid 7a-e, 12a-d were prepared and screened for their in vitro PARP1 inhibition. They revealed promising inhibition at nanomolar level especially compounds 5c, 7b, 7d and 7e (IC = 30.51, 41.60, 41.53 and 36.33 nM) with higher potency than olaparib (IC = 43.59 nM). Moreover, compounds 5b, 5d, 7a, 12a and 12c exhibited good comparable activity (IC = 65.93, 58.90, 66.57, 45.40 and 50.62 nM, respectively). Furthermore, the most active compounds 5c, 7b, 7d, 7e, 12a and 12c against PARP1 in vitro were evaluated in the BRCA1 mutated triple negative breast cancer cell line MDA-MB-436 where 5c and 12c showed higher potency compared to olaparib and result in cell cycle arrest at G2/M phase. 5c and 12c showed apoptotic effects in MDA-MB-436 and potentiated the cytotoxicity of temozolomide in A549 human lung epithelial cancer cell line. Compounds 5c and 12c represent interesting starting points towards PARP1 inhibitors.

摘要

基于巴比妥酸 5a-e、10a-d;硫代巴比妥酸 6a-e、11a-d 和 1,3-二甲基巴比妥酸 7a-e、12a-d,制备了 6 个系列化合物,并对其 PARP1 抑制作用进行了体外筛选。结果表明,化合物 5c、7b、7d 和 7e 在纳米摩尔水平具有良好的抑制作用(IC50=30.51、41.60、41.53 和 36.33 nM),比奥拉帕利(IC50=43.59 nM)更有效。此外,化合物 5b、5d、7a、12a 和 12c 也表现出良好的活性(IC50=65.93、58.90、66.57、45.40 和 50.62 nM)。此外,在体外对 PARP1 活性最高的化合物 5c、7b、7d、7e、12a 和 12c 进行了评价,结果表明在 BRCA1 突变的三阴性乳腺癌细胞系 MDA-MB-436 中,5c 和 12c 比奥拉帕利具有更高的活性,导致细胞周期停滞在 G2/M 期。化合物 5c 和 12c 在 MDA-MB-436 中表现出凋亡作用,并增强了 A549 人肺上皮癌细胞系中替莫唑胺的细胞毒性。化合物 5c 和 12c 是 PARP1 抑制剂的有趣起点。

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