Discovery of New Isoniazid Derivatives As Anti-tubercular Agents: In silico Studies, Synthesis, and In vitro Activity Evaluation

IF 0.3 Q4 CHEMISTRY, MULTIDISCIPLINARY Oriental Journal Of Chemistry Pub Date : 2023-12-27 DOI:10.13005/ojc/390610
Abida Ash Mohd, Mohd Imran, Noura Yousif Alnaser, Shams Saud Altimyat, Nawaf M. Al-Otaibi, A. Bawadekji
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Abstract

This research aimed to discover novel isoniazid (INH) derivatives as anti-tubercular (anti-TB) agents. The chemical structures of isoniazid-based pyridazinone (IBP) derivatives were designed, and their toxicity and pharmacokinetic properties were predicted using the ProTox II and Swiss-ADME databases. The molecular docking of non-toxic IBPs was also performed concerning INH, pyrazinamide (PYZ), ethionamide (ETH), macozinone (MCZ), and BTZ043 utilizing DprE1 enzyme’s proteins (PDB IDs: 4F4Q, 4NCR and 6HEZ). Based on the in silico study results, IBP19, IBP21, IBP22, and IBP29 were selected for their synthesis, and the spectral analysis confirmed their chemical structures. In vitro, anti-TB activity against Mtb H37Rv strain and MTT assay (against HepG2 and Vero cell lines) of IBP19, IBP21, IBP22, and IBP29 were also carried out. A total of eleven non-toxic IBPs were identified with promising pharmacokinetic parameters. The docking score (DS in kcal/mol against 6HEZ protein) of IBP19 (-9.52), IBP21 (-8.78), IBP22 (-9.07), and IBP29 (-9.99) was better than MCZ (-8.76) and BTZ043 (-8.56) revealing their DprE1 enzyme inhibitory action. The in vitro anti-TB activity evaluation (MIC values) confirmed that IBP19 (1.562 µg/ml), IBP21 (1.562 µg/ml), IBP22 (1.562 µg/ml), and IBP29 (1.562 µg/ml) had almost double potency than INH (3.125 µg/ml), and PYZ (3.125 µg/ml). IBP19, IBP21, IBP22, and IBP29 also displayed a CC50 value of > 300 µg/ml against HCL and VCL cell lines. This effect was better than INH (> 200 µg/ml), ETH (> 150 µg/ml), and PYZ (> 200 µg/ml). Accordingly, IBP19, IBP21, IBP22, and IBP29 provide a new template for developing safe and effective novel DprE1 inhibitors.
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发现新的异烟肼衍生物作为抗结核药物:硅学研究、合成和体外活性评估
这项研究旨在发现新型异烟肼(INH)衍生物作为抗结核(TB)药物。研究人员设计了基于异烟肼的哒嗪酮(IBP)衍生物的化学结构,并利用 ProTox II 和 Swiss-ADME 数据库预测了它们的毒性和药代动力学特性。此外,还利用 DprE1 酶蛋白(PDB IDs:4F4Q、4NCR 和 6HEZ)对 INH、吡嗪酰胺(PYZ)、乙硫酰胺(ETH)、大嗪酮(MCZ)和 BTZ043 等无毒 IBP 进行了分子对接。根据硅学研究结果,IBP19、IBP21、IBP22 和 IBP29 被选中用于合成,光谱分析证实了它们的化学结构。此外,还对 IBP19、IBP21、IBP22 和 IBP29 进行了抗 Mtb H37Rv 菌株的体外抗结核活性试验和 MTT 试验(针对 HepG2 和 Vero 细胞株)。共鉴定出 11 种无毒的 IBP,其药代动力学参数很有希望。与 MCZ(-8.76)和 BTZ043(-8.56)相比,IBP19(-9.52)、IBP21(-8.78)、IBP22(-9.07)和 IBP29(-9.99)的对接得分(对 6HEZ 蛋白的 DS,单位为 kcal/mol)更高,显示了它们对 DprE1 酶的抑制作用。体外抗结核活性评估(MIC 值)证实,IBP19(1.562 微克/毫升)、IBP21(1.562 微克/毫升)、IBP22(1.562 微克/毫升)和 IBP29(1.562 微克/毫升)比 INH(3.125 微克/毫升)和 PYZ(3.125 微克/毫升)几乎具有双倍的效力。IBP19、IBP21、IBP22 和 IBP29 对 HCL 和 VCL 细胞株的 CC50 值也大于 300 µg/ml。这一效果优于 INH(> 200 µg/ml)、ETH(> 150 µg/ml)和PYZ(> 200 µg/ml)。因此,IBP19、IBP21、IBP22 和 IBP29 为开发安全有效的新型 DprE1 抑制剂提供了新的模板。
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来源期刊
Oriental Journal Of Chemistry
Oriental Journal Of Chemistry CHEMISTRY, MULTIDISCIPLINARY-
自引率
20.00%
发文量
172
期刊介绍: Oriental Journal of Chemistry was started in 1985 with the aim to promote chemistry research. The journal consists of articles which are rigorously peer-reviewed. The journal was indexed in Emerging Science citation index in 2016. The Editorial board member consists of eminent international scientist in all fields of Chemistry. Details of each member and their contact information is mentioned in website. The journal has thorough ethics policies and uses plagiarism detection software(ithenticate) to screen each submission. The journal has recently partnered with publons as a part of making our reviews more transparent. The journal has recently incorporated PlumX for article level matrix. The journal is promoting research on all social and academic platforms mentioned in PlumX guidelines. The journal uses google maps to improve on the geographical distribution of Editorial board members as well as authors.
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