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发现具有强效细胞活性的口服生物利用度喹啉基醛脱氢酶 1A1(ALDH1A1)抑制剂。

Discovery of Orally Bioavailable, Quinoline-Based Aldehyde Dehydrogenase 1A1 (ALDH1A1) Inhibitors with Potent Cellular Activity.

机构信息

National Center for Advancing Translational Sciences, National Institutes of Health , 9800 Medical Center Drive , Rockville , Maryland 20850 , United States.

Centre for Translational Myeloma Research, Botnar Research Centre, Oxford NIHR BRU , University of Oxford , Oxford OX3 7LD , U.K.

出版信息

J Med Chem. 2018 Jun 14;61(11):4883-4903. doi: 10.1021/acs.jmedchem.8b00270. Epub 2018 May 31.

Abstract

Aldehyde dehydrogenases (ALDHs) are responsible for the metabolism of aldehydes (exogenous and endogenous) and possess vital physiological and toxicological functions in areas such as CNS, inflammation, metabolic disorders, and cancers. Overexpression of certain ALDHs (e.g., ALDH1A1) is an important biomarker in cancers and cancer stem cells (CSCs) indicating the potential need for the identification and development of small molecule ALDH inhibitors. Herein, a newly designed series of quinoline-based analogs of ALDH1A1 inhibitors is described. Extensive medicinal chemistry optimization and biological characterization led to the identification of analogs with significantly improved enzymatic and cellular ALDH inhibition. Selected analogs, e.g., 86 (NCT-505) and 91 (NCT-506), demonstrated target engagement in a cellular thermal shift assay (CETSA), inhibited the formation of 3D spheroid cultures of OV-90 cancer cells, and potentiated the cytotoxicity of paclitaxel in SKOV-3-TR, a paclitaxel resistant ovarian cancer cell line. Lead compounds also exhibit high specificity over other ALDH isozymes and unrelated dehydrogenases. The in vitro ADME profiles and pharmacokinetic evaluation of selected analogs are also highlighted.

摘要

醛脱氢酶(ALDHs)负责醛类(外源性和内源性)的代谢,在中枢神经系统、炎症、代谢紊乱和癌症等领域具有重要的生理和毒理功能。某些 ALDHs(如 ALDH1A1)的过度表达是癌症和癌症干细胞(CSCs)的重要生物标志物,表明需要识别和开发小分子 ALDH 抑制剂。本文描述了一类新设计的 ALDH1A1 抑制剂的喹啉类类似物。通过广泛的药物化学优化和生物学特性研究,确定了具有显著改善的酶和细胞 ALDH 抑制作用的类似物。选定的类似物,如 86(NCT-505)和 91(NCT-506),在细胞热转移分析(CETSA)中显示出靶标结合,抑制 OV-90 癌细胞的 3D 球体培养物的形成,并增强紫杉醇在紫杉醇耐药卵巢癌细胞系 SKOV-3-TR 中的细胞毒性。先导化合物对其他 ALDH 同工酶和无关脱氢酶也具有很高的特异性。还强调了选定类似物的体外 ADME 概况和药代动力学评估。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/4c9a/6004562/0b7e72be2d31/jm-2018-00270n_0001.jpg

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