Department of Pharmaceutical Medicinal Chemistry and Drug Design, Faculty of Pharmacy (Girls), Al-Azhar University, Nasr City, Cairo, Egypt.
Drug Design and Discovery Lab, Zewail City of Science and Technology, Giza, Egypt.
Arch Pharm (Weinheim). 2022 Apr;355(4):e2100451. doi: 10.1002/ardp.202100451. Epub 2022 Jan 31.
The need for new chemotherapeutics to overcome development of resistance merits research to discover new agents. Benzocaine derivatives are essential compounds in medicinal chemistry due to their various biological activities including antibacterial and anticancer activities. Therefore, this study focuses on the synthesis of new benzocaine derivatives 3a-e, 6, 7a and 7b, 8, 10-14, and 16a-d and their in vitro evaluation as antibacterial agents against gram +ve and -ve strains and as anticancer agents against HepG-2, HCT-116, and MCF-7 human cancer cell lines. The obtained results demonstrated that thiazolidines 6 and 7b showed higher antibacterial and anticancer activity in comparison with the reference drugs. In addition, 6 and 7b showed high potency as inhibitors toward their biological targets, that is DNA gyrase and human topoisomerase IIα, as compared to the reference standard drugs novobiocin and etoposide, respectively. Molecular docking demonstrated that both compounds could identify the active site of their target enzymes and develop effective binding interactions. Absorption, distribution, metabolism and elimination (ADME) and drug-likeness predictions of both compounds showed that they both have good ADME profiles and no structural alerts that might cause toxicity. Based on this, 6 and 7b could serve as lead compounds for the design of more potent antibacterial and anticancer agents.
需要新的化疗药物来克服耐药性的发展,值得研究发现新的药物。苯佐卡因衍生物是药物化学中必不可少的化合物,因为它们具有多种生物活性,包括抗菌和抗癌活性。因此,本研究集中于合成新的苯佐卡因衍生物 3a-e、6、7a 和 7b、8、10-14 和 16a-d,并对其进行体外评估,作为对抗革兰氏阳性和阴性菌株的抗菌剂,以及作为对抗 HepG-2、HCT-116 和 MCF-7 人癌细胞系的抗癌剂。所得结果表明,与对照药物相比,噻唑烷 6 和 7b 表现出更高的抗菌和抗癌活性。此外,6 和 7b 作为 DNA 拓扑异构酶和人拓扑异构酶 IIα 的抑制剂的效力高于参考标准药物新生霉素和依托泊苷。分子对接表明,这两种化合物都可以识别其靶酶的活性位点,并形成有效的结合相互作用。这两种化合物的吸收、分布、代谢和排泄(ADME)和药物相似性预测表明,它们都具有良好的 ADME 特征,并且没有可能导致毒性的结构警报。基于这一点,6 和 7b 可以作为设计更有效抗菌和抗癌药物的先导化合物。