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一种新型一维锰(II)配位聚合物:合成、晶体结构、 Hirshfeld表面分析及分子对接研究

A new 1D Mn(II) coordination polymer: Synthesis, crystal structure, hirshfeld surface analysis and molecular docking studies.

作者信息

Gurbanov Atash V, Firoozbakht Fateme, Pourshirband Nafiseh, Sharafi-Badr Paria, Hayati Payam, Souri Bagher, Eshghi Fazlolah, Kaminsky Werner, Mahmoudi Ghodrat, Verpoort Francis, Mehrabadi Zohreh

机构信息

Centro de Química Estrutural, Institute of Molecular Sciences, Instituto Superior Técnico, Universidade de Lisboa, Av. Rovisco Pais, 1049-001 Lisboa, Portugal.

Excellence Center, Baku State University, Z. Khalilov Str. 23, AZ 1148 Baku, Azerbaijan.

出版信息

Heliyon. 2024 Apr 20;10(8):e29565. doi: 10.1016/j.heliyon.2024.e29565. eCollection 2024 Apr 30.

Abstract

The synthesis of novel metal-organic coordination polymers (MOCP) with the chemical formula [MnL (SCN)(OH)]·CHOH [L = 1,5-bis(pyridine-4-ylmethylene) carbonohydrazide] {} was accomplished using two different techniques: solvothermal and sonochemical ultrasonic-assisted. An investigation was carried out to examine the impact of various factors such as reaction time, sonication power, temperature, and reactant concentration on the morphology and size of the crystals. Interestingly, it was found that sonication power and temperature did not affect the crystals' morphology and size. To further analyze the prepared microcrystals of MOCPs, SEM was utilized to examine their surface morphology, and XRD, elemental evaluation composition. The identification of the functional groups present in the prepared Mn-MOCPs was accomplished through the utilization of FT-IR spectroscopy. Subsequently, the calcination of in an air atmosphere at 650 °C led to the formation of MnO nanoparticles. The geometric and electronic structure of the MOCPs was evaluated using density functional theory (DFT). The utilization of molecular docking methodologies demonstrated that the best cavity of the human androgen receptor possessed an interaction energy of -116.3 kJ mol. This energy encompassed a combination of both bonding and non-bonding interactions. The Results showed that steric interaction and electrostatic potential are the main interactions in AR polymer and Mn(II). These interactions in the defined cavity indicated that this polymer could be an effective anti-prostate candidate, because AR is involved in the growth of prostate cancer cells, and these interactions indicated the inhibition of prostate cancer cell growth.

摘要

采用两种不同技术合成了化学式为[MnL(SCN)(OH)]·CHOH [L = 1,5 - 双(吡啶 - 4 - 基亚甲基)碳酰肼]的新型金属有机配位聚合物(MOCP):溶剂热法和超声化学超声辅助法。开展了一项研究,以考察反应时间、超声功率、温度和反应物浓度等各种因素对晶体形态和尺寸的影响。有趣的是,发现超声功率和温度并不影响晶体的形态和尺寸。为了进一步分析制备的MOCP微晶,利用扫描电子显微镜(SEM)检查其表面形态,并利用X射线衍射(XRD)进行元素组成分析。通过傅里叶变换红外光谱(FT - IR)确定了制备的锰基MOCP中存在的官能团。随后,在650℃的空气气氛中煅烧导致形成MnO纳米颗粒。利用密度泛函理论(DFT)评估了MOCP的几何和电子结构。分子对接方法的应用表明,人类雄激素受体的最佳空腔具有-116.3 kJ mol的相互作用能。该能量包含了键合和非键合相互作用的组合。结果表明,空间相互作用和静电势是AR聚合物与Mn(II)之间的主要相互作用。在确定的空腔中的这些相互作用表明,这种聚合物可能是一种有效的抗前列腺癌候选物,因为AR参与前列腺癌细胞的生长,而这些相互作用表明对前列腺癌细胞生长具有抑制作用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/5a5d/11063412/9af36458421e/gr1.jpg

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