Spiroindoline quinazolinedione derivatives as inhibitors of P-glycoprotein: potential agents for overcoming multidrug resistance in cancer therapy.

IF 3.9 2区 化学 Q2 CHEMISTRY, APPLIED
Fatemeh Moosavi, Masoumeh Divar, Soghra Khabnadideh, Marjan Tavakkoli, Maryam Mohabbati, Luciano Saso, Alireza Poustforoosh, Omidreza Firuzi
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引用次数: 0

Abstract

Multidrug resistance (MDR) presents a major challenge for effectiveness of chemotherapy. This study investigates the effectiveness of spiroindoline quinazolinediones in reversing MDR mediated by P-glycoprotein (P-gp) overexpression in cancer cells. A series of synthesized hybrid spiro[indoline-3,2'-quinazoline]-2,4'(3'H)-dione derivatives (compounds 5a-5l) were analyzed for their ability to enhance rhodamine 123 (Rhd123) accumulation in the MES-SA/DX5 cell line using flow cytometry. The MTT assay was also employed to evaluate the compounds' effectiveness in reversing drug resistance. Additionally, docking studies and molecular dynamics simulations were conducted to investigate the interaction of these compounds with the P-gp transporter. The Rhd123 accumulation assay in MDR cancer cells revealed that most compounds, in particular 5f, 5g, 5h, 5i, 5j, 5k, and 5l, exhibited significant potential as P-gp inhibitors. Among the tested derivatives, compounds 5g and 5l demonstrated the best effects, and increased Rhd123 accumulation up to 12.9 times compared to untreated cells. Additionally, compounds 5f through 5 l bearing methylbenzyl (5f), benzyl (5g), pentyl (5 ), p-bromobenzyl (5i), p-chlorobenzyl (5j), dichlorobenzyl (5k), and tert-butylbenzyl (5l) substituents on the isatin ring effectively restored sensitivity to doxorubicin at their non-toxic concentrations in resistant MES-SA/DX5 cells. Among these, compound 5l at 5 μM exhibited the highest inhibitory potential, and lowered doxorubicin's IC50 value 10.1 times compared to control. Moreover, in silico investigation identified the potential interactions of test compounds with critical residues of P-gp involved in its efflux function. Our study suggests that the synthesized spiroindoline quinazolinediones may have high potentials as agents capable of reversing MDR in cancer cells.

作为p -糖蛋白抑制剂的螺络多啉喹唑啉二酮衍生物:癌症治疗中克服多药耐药的潜在药物。
多药耐药(MDR)是影响化疗有效性的主要问题。本研究探讨了螺旋吲哚啉喹唑啉二酮类药物在逆转肿瘤细胞p -糖蛋白(P-gp)过表达介导的多药耐药中的作用。利用流式细胞术分析了合成的一系列杂化螺[吲哚-3,2'-喹唑啉]-2,4'(3'H)-二酮衍生物(化合物5a-5l)在MES-SA/DX5细胞株中促进罗丹明123 (Rhd123)积累的能力。MTT法还用于评价化合物逆转耐药的有效性。此外,对接研究和分子动力学模拟研究了这些化合物与P-gp转运体的相互作用。在MDR癌细胞中的Rhd123积累试验显示,大多数化合物,特别是5f、5g、5h、5i、5j、5k和5l,表现出显著的P-gp抑制剂潜力。在所测试的衍生物中,化合物5g和5l的效果最好,与未处理的细胞相比,Rhd123的积累增加了12.9倍。此外,含有甲基苄基(5f)、苄基(5g)、戊基(5)、对溴苄基(5i)、对氯苯基(5j)、二氯苯基(5k)和叔丁基苄基(5l)取代基的化合物5f至5l在耐药的messa /DX5细胞中有效地恢复了对无毒浓度的阿霉素的敏感性。其中,化合物5l在5 μM处表现出最高的抑制电位,使阿霉素的IC50值比对照降低10.1倍。此外,在计算机研究中发现了测试化合物与P-gp关键残基的潜在相互作用,这些残基参与了P-gp的外排功能。我们的研究表明,合成的螺旋吲哚啉喹唑啉二酮可能具有很高的潜力,可以作为逆转癌细胞耐多药耐药的药物。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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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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