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二氯(L-组氨酸)铜(II)的热稳定性、振动性质及生物学评估探索:理论与实验相结合的研究

Exploring Thermal Stability, Vibrational Properties, and Biological Assessments of Dichloro(l-histidine)copper(II): A Combined Theoretical and Experimental Study.

作者信息

Abreu Kamila R, Viana Jailton R, Oliveira Neto João G, Dias Tatielle G, Reis Aramys S, Lage Mateus R, da Silva Luzeli M, de Sousa Francisco F, Dos Santos Adenilson O

机构信息

Center for Sciences of Imperatriz, Federal University of Maranhao (UFMA), 65900-410 Imperatriz, MA, Brazil.

Institute of Exact and Natural Sciences, Federal University of Para (UFPA), 66075-110 Belem, PA, Brazil.

出版信息

ACS Omega. 2024 Oct 16;9(43):43488-43502. doi: 10.1021/acsomega.4c05029. eCollection 2024 Oct 29.

Abstract

Dichloro(l-histidine)copper(II) crystal ([Cu(l-His)Cl] complex) was obtained by the slow evaporation method and characterized concerning its thermal stability, phase transformations, and electronic and vibrational properties. X-ray diffraction (XRPD) confirmed that this complex crystallizes with an orthorhombic structure (222 space group). Thermal analyses (TG and DTA) demonstrate stability from ambient temperature up to 460 K, followed by a phase transition from the orthorhombic structure to the amorphous form around 465 K, as confirmed by temperature-dependent XRPD studies. The active modes in Fourier transform infrared (FT-IR) and Raman spectroscopy spectra were suitably assigned via density functional theory (DFT) calculations. Additionally, Hirshfeld surface analysis uncovered the prominence of Cl···H, O···H, and H···H interactions as the primary intermolecular forces within the crystal structure. The antimicrobial activity of the [Cu(l-His)Cl] complex was investigated, demonstrating significant efficacy against Gram-positive bacteria (), Gram-negative bacteria (), and fungi (). The minimum inhibitory concentration and cell viability tests showed that the complex inhibits the growth of bacteria at a concentration of 1.5 μM without causing damage to the human cell line. The pharmacokinetic parameters corroborate the other tested parameters and highlight the [Cu(l-His)Cl] complex as a promising alternative for future clinical trials and medicinal applications. The alignment of the pharmacokinetic parameters with other tested criteria highlights the potential of the [Cu(l-His)Cl] complex as a promising candidate for future clinical studies.

摘要

通过缓慢蒸发法获得了二氯(L-组氨酸)铜(II)晶体([Cu(L-His)Cl]配合物),并对其热稳定性、相变以及电子和振动性质进行了表征。X射线衍射(XRPD)证实该配合物以正交结构(222空间群)结晶。热分析(TG和DTA)表明,从环境温度到460 K具有稳定性,随后在465 K左右发生从正交结构到无定形形式的相变,这由随温度变化的XRPD研究得到证实。通过密度泛函理论(DFT)计算对傅里叶变换红外(FT-IR)和拉曼光谱中的活性模式进行了适当归属。此外,Hirshfeld表面分析揭示了Cl···H、O···H和H···H相互作用作为晶体结构内主要分子间力的突出地位。对[Cu(L-His)Cl]配合物的抗菌活性进行了研究,结果表明其对革兰氏阳性菌、革兰氏阴性菌和真菌具有显著疗效。最低抑菌浓度和细胞活力测试表明,该配合物在浓度为1.5 μM时可抑制细菌生长,且不会对人类细胞系造成损害。药代动力学参数证实了其他测试参数,并突出了[Cu(L-His)Cl]配合物作为未来临床试验和药物应用的有前景替代品的地位。药代动力学参数与其他测试标准的一致性突出了[Cu(L-His)Cl]配合物作为未来临床研究有前景候选物的潜力。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/c280/11525524/c50f644b5e02/ao4c05029_0010.jpg

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