Synthesis and evaluation of antimicrobial, antitubercular and anticancer activities of 2-(1-benzoyl-1H-benzo[d]imidazol-2-ylthio)-N-substituted acetamides.

Q1 Chemistry Chemistry Central Journal Pub Date : 2018-05-26 DOI:10.1186/s13065-018-0432-3
Snehlata Yadav, Siong Meng Lim, Kalavathy Ramasamy, Mani Vasudevan, Syed Adnan Ali Shah, Abhishek Mathur, Balasubramanian Narasimhan
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Abstract

Background: The study describes the synthesis, characterization, in vitro antimicrobial and anticancer evaluation of a series of 2-(1-benzoyl-1H-benzo[d]imidazol-2-ylthio)-N-substituted acetamide derivatives. The synthesized derivatives were also assessed for in vitro antitubercular activity against Mycobacterium tuberculosis H37Rv. The compounds found active in in vitro study were assessed for their in vivo antitubercular activity in mice models and for their inhibitory action on vital mycobacterial enzymes viz, isocitrate lyase, pantothenate synthetase and chorismate mutase.

Results: Compounds 8, 9 and 11 emerged out as excellent antimicrobial agents in antimicrobial assays when compared to standard antibacterial and antifungal drugs. The results of anticancer activity displayed that majority of the derivatives were less cytotoxic than standard drugs (tamoxifen and 5-fluorouracil) towards MCF7 and HCT116 cell lines. However, compound 2 (IC50 = 0.0047 µM/ml) and compound 10 (IC50 = 0.0058 µM/ml) showed highest cytotoxicity against MCF7 and HCT116 cell lines, respectively. The results of in vivo antitubercular activity revealed that a dose of 1.34 mg/kg was found to be safe for the synthesized compounds. The toxic dose of the compounds was 5.67 mg/kg while lethal dose varied from 1.81 to 3.17 mg/kg body weight of the mice. Compound 18 inhibited all the three mycobacterial enzymes to the highest level in comparison to the other synthesized derivatives but showed lesser inhibition as compared to streptomycin sulphate.

Conclusions: A further research on most active synthesized compounds as lead molecules may result in discovery of novel anticancer and antitubercular agents.

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2-(1-苯甲酰基-1H-苯并[d]咪唑-2-硫基)-N-取代乙酰胺的合成及抗菌、抗结核和抗癌活性评价。
背景:本研究描述了一系列 2-(1-苯甲酰基-1H-苯并[d]咪唑-2-硫基)-N-取代乙酰胺衍生物的合成、表征、体外抗菌和抗癌评估。还评估了合成的衍生物对结核分枝杆菌 H37Rv 的体外抗结核活性。对在体外研究中发现具有活性的化合物进行了小鼠模型体内抗结核活性评估,并评估了它们对重要的分枝杆菌酶,即异柠檬酸裂解酶、泛酸合成酶和氯氨酸变异酶的抑制作用:结果:与标准抗菌药和抗真菌药相比,化合物 8、9 和 11 在抗菌试验中表现出卓越的抗菌效果。抗癌活性结果表明,大多数衍生物对 MCF7 和 HCT116 细胞系的细胞毒性低于标准药物(他莫昔芬和 5-氟尿嘧啶)。然而,化合物 2(IC50 = 0.0047 µM/ml)和化合物 10(IC50 = 0.0058 µM/ml)分别对 MCF7 和 HCT116 细胞株表现出最高的细胞毒性。体内抗结核活性结果显示,合成化合物的安全剂量为 1.34 mg/kg。化合物的毒性剂量为 5.67 毫克/千克,致死剂量为 1.81 至 3.17 毫克/千克体重。与其他合成衍生物相比,化合物 18 对三种霉菌酶的抑制作用最强,但与硫酸链霉素相比,抑制作用较弱:结论:将最活跃的合成化合物作为先导分子进行进一步研究,可能会发现新型抗癌和抗结核药物。
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来源期刊
Chemistry Central Journal
Chemistry Central Journal 化学-化学综合
CiteScore
4.40
自引率
0.00%
发文量
0
审稿时长
3.5 months
期刊介绍: BMC Chemistry is an open access, peer reviewed journal that considers all articles in the broad field of chemistry, including research on fundamental concepts, new developments and the application of chemical sciences to broad range of research fields, industry, and other disciplines. It provides an inclusive platform for the dissemination and discussion of chemistry to aid the advancement of all areas of research. Sections: -Analytical Chemistry -Organic Chemistry -Environmental and Energy Chemistry -Agricultural and Food Chemistry -Inorganic Chemistry -Medicinal Chemistry -Physical Chemistry -Materials and Macromolecular Chemistry -Green and Sustainable Chemistry
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