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NSC 18725,一种吡唑衍生物,通过诱导自噬抑制细胞内生长。

NSC 18725, a Pyrazole Derivative Inhibits Growth of Intracellular by Induction of Autophagy.

作者信息

Arora Garima, Behura Assirbad, Gosain Tannu Priya, Shaliwal Ravi P, Kidwai Saqib, Singh Padam, Kandi Shamseer Kulangara, Dhiman Rohan, Rawat Diwan S, Singh Ramandeep

机构信息

Tuberculosis Research Laboratory, Translational Health Science and Technology Institute, Faridabad, India.

Department of Chemistry, Faculty of Science, University of Delhi, New Delhi, India.

出版信息

Front Microbiol. 2020 Jan 28;10:3051. doi: 10.3389/fmicb.2019.03051. eCollection 2019.

Abstract

The increasing incident rates of drug-resistant tuberculosis (DR-TB) is a global health concern and has been further complicated by the emergence of extensive and total drug-resistant strains. Identification of new chemical entities which are compatible with first-line TB drugs, possess activity against DR-, and metabolically less active bacteria is required to tackle this epidemic. Here, we have performed phenotypic screening of a small molecule library against BCG and identified 24 scaffolds that exhibited MIC values of at least 2.5 μM. The most potent small molecule identified in our study was a nitroso containing pyrazole derivative, NSC 18725. We observed a significant reduction in viable bacilli load of starved upon exposure to NSC 18725. The action of NSC 18725 was "synergistic" with isoniazid (INH) and "additive" with other drugs in our checkerboard assays. Structure-activity relationship (SAR) studies of the parent compound revealed that pyrazole derivatives without a functional group at fourth position lacked anti-mycobacterial activity . The derivative with -chlorophenyl substitution at the first position of the pyrazole ring was the most active scaffold. We also demonstrate that NSC 18725 is able to induce autophagy in differentiated THP-1 macrophages. The induction of autophagy by NSC 18725 is the major mechanism for the killing of intracellular slow and fast-growing mycobacteria. Taken together, these observations support the identification of NSC 18725 as an antimycobacterial compound, which synergizes with INH, is active against non-replicative mycobacteria and induces autophagy in macrophages.

摘要

耐药结核病(DR-TB)发病率的不断上升是一个全球健康问题,而广泛耐药和全耐药菌株的出现使这一问题更加复杂。为应对这一疫情,需要鉴定与一线抗结核药物兼容、对耐药菌以及代谢活性较低的细菌具有活性的新化学实体。在此,我们针对卡介苗对一个小分子文库进行了表型筛选,鉴定出24种支架,其最低抑菌浓度(MIC)值至少为2.5μM。我们研究中鉴定出的最有效的小分子是一种含亚硝基的吡唑衍生物,NSC 18725。我们观察到,暴露于NSC 18725后,饥饿状态下的活菌载量显著降低。在我们的棋盘法试验中,NSC 18725的作用与异烟肼(INH)“协同”,与其他药物“相加”。对母体化合物的构效关系(SAR)研究表明,在第4位没有官能团的吡唑衍生物缺乏抗分枝杆菌活性。吡唑环第1位被氯苯基取代的衍生物是最具活性的支架。我们还证明,NSC 18725能够在分化的THP-1巨噬细胞中诱导自噬。NSC 18725诱导自噬是杀死细胞内生长缓慢和快速生长的分枝杆菌的主要机制。综上所述,这些观察结果支持将NSC 18725鉴定为一种抗分枝杆菌化合物,它与INH协同作用,对非复制性分枝杆菌有活性,并能在巨噬细胞中诱导自噬。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/6012/6999026/e173c101968f/fmicb-10-03051-g001.jpg

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