新型杂化材料H7N2O4P:晶体学和分子分析及其抗癌潜力

IF 2.2 4区 化学 Q2 Engineering
Abdellatif Rafik, Hafid Zouihri, Kinzy Charles, Kholood A. Dahlous, Mohammad Shahidul Islam, Nivedita Acharjee, Mohammed Salah, Abdellah Zeroual
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引用次数: 0

摘要

利用6-311G基集,将磷酸肼(H2DP)的分子结构与先进量子化学方法(包括DFT和MP2)确定的最优结构进行了比较。赫希菲尔德表面分析用于识别特定的分子相互作用。等高线(dnorm、di和de)和指纹图谱的表面分析揭示了各种相互作用的贡献:H…H(25.2%)、O…H(67.3%)和H…N(7.4%)。在赫什菲尔德表面的静电势图突出了晶体填充过程中的静电互补性。H2DP在紫外可见区域的宽透明窗口使其非常适合光电器件,因为它允许在宽光谱范围内高效传输光,提高了性能和通用性。利用DFT和MP2方法,我们进一步研究了H2DP的晶体结构。用HOMO和LUMO分析了晶体内分子的静电分布和反应性。散点图解释了片段间和片段内的相互作用,以及ELF和NCI之间的化学键。此外,还进行了分子对接研究,以评估H2DP的抗癌潜力。晶体生长是一个表面控制的过程,涉及溶质分子进入表面晶格位置,从而导致晶体材料的长程有序特性。分子动力学模拟评估了磷酸肼与芳香化酶细胞色素P450酶(PDB ID: 3EQM)的结合亲和力。该化合物表现出中等强的结合亲和力,表明其可能调节酶活性,并在类固醇形成的最后阶段将雄激素转化为雌激素。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Novel hybrid material H7N2O4P: crystallographic and molecular analysis with insights into its anticancer potential

Novel hybrid material H7N2O4P: crystallographic and molecular analysis with insights into its anticancer potential

The molecular structure of hydrazinium phosphate (H2DP) has been compared to the optimal structure determined by advanced quantum chemical methods, including DFT and MP2, using the 6-311G basis set. Hirschfeld surface analysis was employed to identify specific molecular interactions. The surface analyses of contours (dnorm, di, and de) and fingerprint plots revealed the contributions of various interactions: H…H (25.2%), O…H (67.3%), and H…N (7.4%). The electrostatic potential mapped on Hirshfeld’s surface highlighted the electrostatic complementarity during crystal packing. H2DP’s broad transparency window in the UV–visible region makes it highly suitable for optoelectronic devices, as it allows efficient light transmission across a wide spectrum, enhancing performance and versatility. Using DFT and MP2 methodologies, we further investigated the H2DP crystal structure. A HOMO and LUMO analysis was conducted to examine the electrostatic distribution and reactivity of the molecules within the crystal. The scatter graph explained the inter- and intra-fragment interactions, as well as the chemical bonding between ELF and NCI. Additionally, molecular docking studies were performed to assess H2DP’s anticancer potential. Crystal growth, a surface-controlled process, involves the incorporation of solute molecules into surface lattice sites, resulting in the long-range order characteristic of crystalline materials. Molecular dynamics simulations evaluated the binding affinity of hydrazinium phosphate to the aromatase cytochrome P450 enzyme (PDB ID: 3EQM). The compound exhibited moderately strong binding affinity, suggesting its potential to modulate enzyme activity and its relevance in the conversion of androgens into estrogen during the final phase of steroidogenesis.

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来源期刊
Chemical Papers
Chemical Papers Chemical Engineering-General Chemical Engineering
CiteScore
3.30
自引率
4.50%
发文量
590
期刊介绍: Chemical Papers is a peer-reviewed, international journal devoted to basic and applied chemical research. It has a broad scope covering the chemical sciences, but favors interdisciplinary research and studies that bring chemistry together with other disciplines.
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