芒果叶提取物作为潜在EGFR激酶调节剂的化学信息学分析。

IF 3.8 3区 化学 Q2 CHEMISTRY, MULTIDISCIPLINARY
Frontiers in Chemistry Pub Date : 2025-03-24 eCollection Date: 2025-01-01 DOI:10.3389/fchem.2025.1524384
Md Abdullah Al Mashud, Ajoy Kumer, Ismat Jahan, Md Mehedi Hasan Somrat, Md Enamul Kabir Talukder, Md Mashiar Rahman, A F M Shahab Uddin, Md Harun-Or-Rashid, Md Mizanur Rahman, Mohammad Harun-Ur-Rashid, Gamal A Shazly, Youssouf Ali Younous
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引用次数: 0

摘要

乳腺癌是女性中最常见和最致命的癌症之一,是一个全球性的巨大问题。对新型治疗方法的关键需求是由其高死亡率和无情的进展所强调的。尽管乳腺癌是世界上最常见的死亡原因之一,但治疗途径仍然有限。本研究旨在探讨芒果叶提取物中特定化合物对耐药乳腺癌蛋白酶PDB ID 3w32生长的潜在抑制作用。采用分子对接、分子动力学(MD)模拟、量子力学(QM)计算、吸收、分布、代谢、排泄和毒性(ADMET)方法等分子模拟技术,对芒果叶中存在的化学成分进行分析,以确定槲皮素(08)、儿茶素(09)和鞣花酸(10)这3种关键化学成分。这些配体经过了广泛的测试,以确定它们对过量表达3w32的乳腺癌蛋白的有效性。保留HOMO-LUMO分析的量子计算可以识别分子的重要特征,如化学势、电负性、硬度、柔软度和轨道能隙。根据分子对接查询,配体08、09和10是强候选体,对过表达3w32的乳腺癌蛋白具有很强的结合亲和力。通过MD模拟验证了所选天然配体蛋白结合位点的稳定性。这三种配体不仅超过了fda批准的治疗效果,而且还满足了作为一种可能的新型乳腺癌抑制剂的要求。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Chemoinformatics analysis of Mangifera indica leaves extracted phytochemicals as potential EGFR kinase modulators.

Breast cancer, being among the most frequent and fatal cancers in women, is an enormous issue globally. The critical requirement for novel treatment methods is underscored by its high mortality rate and relentless advancement. Even though breast cancer is one of the world's most common causes of death, the therapeutic avenue is still limited. The aim of this work is to investigate the potential inhibitory effects of specific compounds present in leaf extract from Mangifera indica on the growth of drug-resistant breast cancer protease PDB ID 3w32. The chemical compounds present in Mangifera indica leaves were used to analyze using molecular modeling techniques, such as molecular docking, molecular dynamics (MD) simulations, quantum mechanics (QM) calculations, and the Absorption, Distribution, Metabolism, Excretion, and Toxicity (ADMET) method, in order to examine three key chemical constituents: quercetin (08), catechin (09), and elagic acid (10). The ligands undergo extensive testing to figure out how effective they are against the 3w32-overexpressing breast cancer protein. Quantum calculations retaining HOMO-LUMO analysis might identify important characteristics of molecules, such as chemical potential, electronegativity, hardness, softness, and orbital energy gaps. According to the molecular docking inquiry, ligands 08, 09, and 10 are strong candidates with strong binding affinity for the breast cancer protein that overexpresses 3w32. The protein binding site stability of the chosen natural ligands was verified by MD simulation. These three ligands not only surpass the efficacy of the FDA-approved treatment, but also fulfill the requirements for a possible new inhibitor of breast cancer.

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来源期刊
Frontiers in Chemistry
Frontiers in Chemistry Chemistry-General Chemistry
CiteScore
8.50
自引率
3.60%
发文量
1540
审稿时长
12 weeks
期刊介绍: Frontiers in Chemistry is a high visiblity and quality journal, publishing rigorously peer-reviewed research across the chemical sciences. Field Chief Editor Steve Suib at the University of Connecticut is supported by an outstanding Editorial Board of international researchers. This multidisciplinary open-access journal is at the forefront of disseminating and communicating scientific knowledge and impactful discoveries to academics, industry leaders and the public worldwide. Chemistry is a branch of science that is linked to all other main fields of research. The omnipresence of Chemistry is apparent in our everyday lives from the electronic devices that we all use to communicate, to foods we eat, to our health and well-being, to the different forms of energy that we use. While there are many subtopics and specialties of Chemistry, the fundamental link in all these areas is how atoms, ions, and molecules come together and come apart in what some have come to call the “dance of life”. All specialty sections of Frontiers in Chemistry are open-access with the goal of publishing outstanding research publications, review articles, commentaries, and ideas about various aspects of Chemistry. The past forms of publication often have specific subdisciplines, most commonly of analytical, inorganic, organic and physical chemistries, but these days those lines and boxes are quite blurry and the silos of those disciplines appear to be eroding. Chemistry is important to both fundamental and applied areas of research and manufacturing, and indeed the outlines of academic versus industrial research are also often artificial. Collaborative research across all specialty areas of Chemistry is highly encouraged and supported as we move forward. These are exciting times and the field of Chemistry is an important and significant contributor to our collective knowledge.
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