基于氧螺[铬-4,3-吲哚烯]的化合物的设计、光谱表征和生物学研究,这些化合物是很有前途的抗表皮生长因子受体增殖抑制剂和抗菌剂。

IF 3.8 2区 化学 Q2 CHEMISTRY, APPLIED
Abdullah Yahya Abdullah Alzahrani, Moustafa O. Aboelez, Moumen S. Kamel, Heba Mohammed Refat M. Selim, Azhaar T. Alsaggaf, Mohammed A. El Hamd, Mahmoud Abd El Aleem Ali Ali El-Remaily
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引用次数: 0

摘要

利用微波加热和饱和 K2CO3 水溶液作为催化剂,高产率地快速一锅合成了氧螺[色烯-4.3-吲哚啉]衍生物。实验结果证实,在研究高性能催化剂的过程中,饱和 K2CO3 溶液与危险金属和强碱相比具有出色的产率。所使用的催化剂绿色环保、经济实惠、极其温和,而且可以广泛使用。然而,它能产生样品,减少副产品的数量,有望用于工业规模的杂环衍生物。新的氧螺[色烯-4.3-吲哚啉]衍生物是由各种异靛红与各种酚缩合而成。生物活性结果表明,与厄洛替尼相比,衍生物 3b、4b、5b 和 6b 是对 A549、MCF-7、HepG-2 和 HCT-116 细胞最有效的类似物,IC50 范围为 3.32 至 11.88 µM。在 A549 细胞中,化合物 3b、4b、5b 和 6b 可诱导细胞凋亡,表现为 Bax 的上调、Bcl-2 的上调以及 caspase-3 和 -9 的刺激。 化合物 3b 的 IC50 值为 0.19 ± 0.09,被证明对 EGFRWT 最有效。根据 MIC 值,化合物 4b 和 6b 对金黄色葡萄球菌具有良好的抗菌活性,与环丙沙星相当,约为氨苄西林的一半。化合物 6b 的 MIC 值比克霉唑低约 25%。化合物 3b、4b、5b 和 6b 在表皮生长因子受体(EGFR)活性位点的硅学分子对接结果表明,与参考药物厄洛替尼相比,化合物 3b、4b、5b 和 6b 具有重要的结合相互作用。此外,通过煮蛋法研究了最有前途的双效抗增殖和抗菌化合物 4b 和 6b 的理化性质,结果表明它们具有可接受的亲脂性、胃肠道吸收和血脑屏障渗透特性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Design, spectroscopic characterizations, and biological investigation of oxospiro[chromine-4,3-indolene]-based compounds as promising antiproliferative EGFR inhibitors and antimicrobial agents

Design, spectroscopic characterizations, and biological investigation of oxospiro[chromine-4,3-indolene]-based compounds as promising antiproliferative EGFR inhibitors and antimicrobial agents

Utilizing microwave heating and an aqueous saturated solution of K2CO3 as a catalyst, a rapidone-pot synthesis of oxospiro[chromene-4.3-indoline] derivatives was produced in high yields. The experimental results confirmed that the saturated solution of K2CO3 gives outstanding yield to dangerous metals and strong bases during investigations into high-performance catalysts. The used catalyst is green, affordable, incredibly mild, and widely accessible. However, it generates samples, reduces the amount of byproducts, and is expected to be used in industrial-scale heterocyclic derivatives. New oxospiro[chromene-4.3-indoline] derivatives have been created from various isatin by condensing with various phenols. The biological activities results showed that when compared to erlotinib, the derivatives 3b, 4b, 5b, and 6b were the most effective analogues on A549, MCF-7, HepG-2, and HCT-116 cells, with an IC50 range of 3.32 to 11.88 µM. In A549 cells, compounds 3b, 4b, 5b, and 6b induced apoptosis, as shown by the up-regulation of Bax, the up-regulation of Bcl-2, and the stimulation of caspase-3 and -9. With IC50 value of 0.19 ± 0.09, compound3b was demonstrated to be the most effective against EGFRWT. Compounds 4b and 6b have good antibacterial activity toward Staphylococcus aureus, comparable to ciprofloxacin, and about half as much activity as ampicillin, according to the MIC value. Compound 6b’s MIC is about 25% lower than clotrimazole drug. The in silico molecular docking outcomes of compounds 3b, 4b, 5b, and 6b in the EGFR active site depicted their ability to adopt essential binding interactions compared to the reference Erlotinib. Moreover, the investigation of the physicochemical properties of the most promising dual acting antiproliferative and antimicrobial compounds 4b and 6b through the egg-boiled method illustrated acceptable lipophilicity, GIT absorption, and blood–brain barrier penetration characteristics.

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来源期刊
Molecular Diversity
Molecular Diversity 化学-化学综合
CiteScore
7.30
自引率
7.90%
发文量
219
审稿时长
2.7 months
期刊介绍: Molecular Diversity is a new publication forum for the rapid publication of refereed papers dedicated to describing the development, application and theory of molecular diversity and combinatorial chemistry in basic and applied research and drug discovery. The journal publishes both short and full papers, perspectives, news and reviews dealing with all aspects of the generation of molecular diversity, application of diversity for screening against alternative targets of all types (biological, biophysical, technological), analysis of results obtained and their application in various scientific disciplines/approaches including: combinatorial chemistry and parallel synthesis; small molecule libraries; microwave synthesis; flow synthesis; fluorous synthesis; diversity oriented synthesis (DOS); nanoreactors; click chemistry; multiplex technologies; fragment- and ligand-based design; structure/function/SAR; computational chemistry and molecular design; chemoinformatics; screening techniques and screening interfaces; analytical and purification methods; robotics, automation and miniaturization; targeted libraries; display libraries; peptides and peptoids; proteins; oligonucleotides; carbohydrates; natural diversity; new methods of library formulation and deconvolution; directed evolution, origin of life and recombination; search techniques, landscapes, random chemistry and more;
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