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5,6-二氢四唑并[1,5-c]喹唑啉:毒性预测、合成、抗菌活性、分子对接及展望。

5,6-Dihydrotetrazolo[1,5-c]quinazolines: Toxicity prediction, synthesis, antimicrobial activity, molecular docking, and perspectives.

机构信息

Department of Bioscience and Biotechnology, Graduate School of Bioresource and Bioenvironmental Sciences, Kyushu University, Fukuoka, Japan.

Department of Pharmaceutical, Organic and Bioorganic Chemistry, Zaporizhzhia State Medical University, Zaporizhzhia, Ukraine.

出版信息

Arch Pharm (Weinheim). 2023 Jun;356(6):e2300029. doi: 10.1002/ardp.202300029. Epub 2023 Mar 2.

Abstract

Antimicrobial resistance is a never-ending challenge, which should be considered seriously, especially when using unprescribed "over-the-counter" drugs. The synthesis and investigation of novel biologically active substances is among the directions to overcome this problem. Hence, 18 novel 5,6-dihydrotetrazolo[1,5-c]quinazolines were synthesized, their identity, purity, and structure were elucidated by elemental analysis, IR, LC-MS, Н, and C NMR spectra. According to the computational estimation, 15 substances were found to be of toxicity Class V, two of Class IV, and only one of Class II. The in vitro serial dilution method of antimicrobial screening against Escherichia coli, Staphylococcus aureus, Klebsiella aerogenes, Pseudomonas aeruginosa, and Candida albicans determined b3, c1, c6, and c10 as the "lead-compounds" for further modifications to increase the level of activity. Substance b3 demonstrated antibacterial activity that can be related to the calculated high affinity toward all studied proteins: 50S ribosomal protein L19 (PDB ID: 6WQN), sterol 14-alpha demethylase (PDB ID: 5TZ1), and ras-related protein Rab-9A (PDB ID: 1WMS). The structure-activity and structure-target affinity relationships are discussed. The targets for further investigations and the anatomical therapeutic chemical codes of drug similarity are predicted.

摘要

抗菌药物耐药性是一个永无止境的挑战,应认真对待,特别是在使用未经处方的“非处方”药物时。合成和研究新型生物活性物质是克服这一问题的方向之一。因此,合成了 18 种新型 5,6-二氢四唑并[1,5-c]喹唑啉,通过元素分析、IR、LC-MS、 1 H 和 13 C NMR 谱对其身份、纯度和结构进行了阐明。根据计算估计,发现 15 种物质的毒性属于 5 类,2 种属于 4 类,只有 1 种属于 2 类。对大肠杆菌、金黄色葡萄球菌、产气肠杆菌、铜绿假单胞菌和白色念珠菌进行的体外连续稀释法抗菌筛选,确定 b3、c1、c6 和 c10 为进一步修饰以提高活性水平的“先导化合物”。b3 物质表现出抗菌活性,这可以归因于其对所有研究蛋白的高亲和力的计算:50S 核糖体蛋白 L19(PDB ID:6WQN)、固醇 14-α 脱甲基酶(PDB ID:5TZ1)和 Ras 相关蛋白 Rab-9A(PDB ID:1WMS)。讨论了结构-活性和结构-靶标亲和力关系。预测了进一步研究的靶标和药物相似性的解剖治疗化学代码。

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