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喹喔啉 -2-羧酸1,4-二氧化物的新型衍生物作为抗分枝杆菌剂:作用机制研究与治疗潜力

Novel Derivatives of Quinoxaline-2-carboxylic Acid 1,4-Dioxides as Antimycobacterial Agents: Mechanistic Studies and Therapeutic Potential.

作者信息

Frolova Svetlana G, Vatlin Aleksey A, Maslov Dmitry A, Yusuf Buhari, Buravchenko Galina I, Bekker Olga B, Klimina Ksenia M, Smirnova Svetlana V, Shnakhova Lidia M, Malyants Irina K, Lashkin Arseniy I, Tian Xirong, Alam Md Shah, Zatonsky George V, Zhang Tianyu, Shchekotikhin Andrey E, Danilenko Valery N

机构信息

Laboratory of Bacterial Genetics, Vavilov Institute of General Genetics, Russian Academy of Sciences, 119333 Moscow, Russia.

Phystech School of Biological and Medical Physics, Moscow Institute of Physics and Technology (State University), 141701 Dolgoprudny, Russia.

出版信息

Pharmaceuticals (Basel). 2023 Nov 6;16(11):1565. doi: 10.3390/ph16111565.

Abstract

The World Health Organization (WHO) reports that tuberculosis (TB) is one of the top 10 leading causes of global mortality. The increasing incidence of multidrug-resistant TB highlights the urgent need for an intensified quest to discover innovative anti-TB medications In this study, we investigated four new derivatives from the quinoxaline-2-carboxylic acid 1,4-dioxide class. New 3-methylquinoxaline 1,4-dioxides with a variation in substituents at positions 2 and 6(7) were synthesized via nucleophilic aromatic substitution with amines and assessed against a spp. Compound showed high antimycobacterial activity (1.25 μg/mL against ) and low toxicity in vivo in mice. Selection and whole-genomic sequencing of spontaneous drug-resistant mutants revealed a high number of single-nucleotide polymorphisms, confirming the predicted mode of action of the quinoxaline-2-carboxylic acid 1,4-dioxide as a DNA-damaging agent. Subsequent reverse genetics methods confirmed that mutations in the genes MSMEG_4646, MSMEG_5122, and MSMEG_1380 mediate resistance to these compounds. Overall, the derivatives of quinoxaline-2-carboxylic acid 1,4-dioxide present a promising scaffold for the development of innovative antimycobacterial drugs.

摘要

世界卫生组织(WHO)报告称,结核病(TB)是全球十大主要死因之一。耐多药结核病发病率的不断上升凸显了加紧探索创新抗结核药物的迫切需求。在本研究中,我们研究了喹喔啉-2-羧酸1,4-二氧化物类的四种新衍生物。通过与胺进行亲核芳香取代反应合成了在2位和6(7)位取代基有所变化的新型3-甲基喹喔啉1,4-二氧化物,并对其进行了抗结核分枝杆菌评估。化合物表现出高抗分枝杆菌活性(对结核分枝杆菌的最低抑菌浓度为1.25μg/mL)且在小鼠体内毒性较低。对自发耐药突变体的筛选和全基因组测序揭示了大量单核苷酸多态性,证实了喹喔啉-2-羧酸1,4-二氧化物作为DNA损伤剂的预测作用模式。随后的反向遗传学方法证实,基因MSMEG_4646、MSMEG_5122和MSMEG_1380中的突变介导了对这些化合物的耐药性。总体而言,喹喔啉-2-羧酸1,4-二氧化物的衍生物为开发创新抗分枝杆菌药物提供了一个有前景的框架。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/33ca/10675252/66269cf695e6/pharmaceuticals-16-01565-sch001.jpg

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