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通过腙官能团将异烟肼与磺酸酯相连:抗结核活性的设计、合成与评估。

Isoniazid Linked to Sulfonate Esters via Hydrazone Functionality: Design, Synthesis, and Evaluation of Antitubercular Activity.

作者信息

Koçak Aslan Ebru, Han Muhammed İhsan, Krishna Vagolu Siva, Tamhaev Rasoul, Dengiz Cagatay, Doğan Şengül Dilem, Lherbet Christian, Mourey Lionel, Tønjum Tone, Gündüz Miyase Gözde

机构信息

Department of Pharmaceutical Chemistry, Faculty of Pharmacy, Hacettepe University, Sıhhiye, Ankara 06100, Turkey.

Department of Pharmaceutical Chemistry, Faculty of Pharmacy, Erciyes University, Kayseri 38039, Turkey.

出版信息

Pharmaceuticals (Basel). 2022 Oct 21;15(10):1301. doi: 10.3390/ph15101301.

Abstract

Isoniazid (INH) is one of the key molecules employed in the treatment of tuberculosis (TB), the most deadly infectious disease worldwide. However, the efficacy of this cornerstone drug has seriously decreased due to emerging INH-resistant strains of (). In the present study, we aimed to chemically tailor INH to overcome this resistance. We obtained thirteen novel compounds by linking INH to in-house synthesized sulfonate esters via a hydrazone bridge (). Following structural characterization by FTIR, H NMR, C NMR, and HRMS, all compounds were screened for their antitubercular activity against H37Rv strain and INH-resistant clinical isolates carrying and mutations. Additionally, the cytotoxic effects of were assessed on three different healthy host cell lines; HEK293, IMR-90, and BEAS-2B. Based on the obtained data, the synthesized compounds appeared as attractive antimycobacterial drug candidates with low cytotoxicity. Moreover, the stability of the hydrazone moiety in the chemical structure of the final compounds was confirmed by using UV/Vis spectroscopy in both aqueous medium and DMSO. Subsequently, the compounds were tested for their inhibitory activities against enoyl acyl carrier protein reductase (InhA), the primary target enzyme of INH. Although most of the synthesized compounds are hosted by the InhA binding pocket, do not primarily show their antitubercular activities by direct InhA inhibition. Finally, in silico determination of important physicochemical parameters of the molecules showed that adhered to Lipinski's rule of five. Overall, our study revealed a new strategy for modifying INH to cope with the emerging drug-resistant strains of .

摘要

异烟肼(INH)是治疗结核病(TB)的关键药物之一,结核病是全球最致命的传染病。然而,由于出现了对异烟肼耐药的菌株,这种基石药物的疗效已严重下降。在本研究中,我们旨在对异烟肼进行化学改造以克服这种耐药性。我们通过腙桥将异烟肼与内部合成的磺酸酯连接,获得了13种新型化合物。通过傅里叶变换红外光谱(FTIR)、氢核磁共振(¹H NMR)、碳核磁共振(¹³C NMR)和高分辨质谱(HRMS)对结构进行表征后,所有化合物均针对H37Rv菌株以及携带katG和inhA突变的异烟肼耐药临床分离株进行了抗结核活性筛选。此外,还评估了这些化合物对三种不同健康宿主细胞系(人胚肾细胞系HEK293、人胚肺成纤维细胞系IMR-90和人支气管上皮细胞系BEAS-2B)的细胞毒性作用。根据所得数据,合成的化合物表现为具有低细胞毒性的有吸引力的抗分枝杆菌药物候选物。此外,通过在水介质和二甲基亚砜(DMSO)中使用紫外可见光谱(UV/Vis),确认了最终化合物化学结构中腙部分的稳定性。随后,测试了这些化合物对烯酰基载体蛋白还原酶(InhA)的抑制活性,InhA是异烟肼的主要靶标酶。尽管大多数合成化合物都位于InhA结合口袋中,但它们并非主要通过直接抑制InhA来表现其抗结核活性。最后,通过计算机模拟确定分子的重要物理化学参数表明,这些化合物符合Lipinski的五规则。总体而言,我们的研究揭示了一种改造异烟肼以应对新出现的耐药菌株的新策略。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/df83/9609273/914b8cc7a404/pharmaceuticals-15-01301-g001.jpg

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