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钒和铜化合物作为癌症治疗潜在药物的合成、晶体结构和计算方法。

Synthesis, Crystal Structure, and Computational Methods of Vanadium and Copper Compounds as Potential Drugs for Cancer Treatment.

机构信息

Centro de Química del Instituto de Ciencias, Benemérita Universidad Autónoma de Puebla, 18 sur y Av. San Claudio, Col. San Manuel, Puebla C. P. 72570, Mexico.

Facultad de Ciencias Químicas, Benemérita Universidad Autónoma de Puebla, 18 sur y Av. San Claudio, Col. San Manuel, Puebla C. P. 72570, Mexico.

出版信息

Molecules. 2020 Oct 14;25(20):4679. doi: 10.3390/molecules25204679.

Abstract

Transition metal-based compounds have shown promising uses as therapeutic agents. Among their unique characteristics, these compounds are suitable for interaction with specific biological targets, making them important potential drugs to treat various diseases. Copper compounds, of which Casiopeinas are an excellent example, have shown promising results as alternatives to current cancer therapies, in part because of their intercalative properties with DNA. Vanadium compounds have been extensively studied for their pharmacological properties and application, mostly in diabetes, although recently, there is a growing interest in testing their activity as anti-cancer agents. In the present work, two compounds, [Cu(Metf)(bipy)Cl]Cl·2HO and [Cu(Impy)(Gly)(HO)]VO, were obtained and characterized by visible and FTIR spectroscopies, single-crystal X-ray diffraction, and theoretical methods. The structural and electronic properties of the compounds were calculated through the density functional theory (DFT) using the Austin-Frisch-Petersson functional with dispersion APFD, and the 6-311 + G(2d,p) basis set. Non-covalent interactions were analyzed using Hirshfeld surface analysis (HSA) and atom in molecules analysis (AIM). Additionally, docking analysis to test DNA/RNA interactions with the Casiopeina-like complexes were carried out. The compounds provide metals that can interact with critical biological targets. In addition, they show interesting non-covalent interactions that are responsible for their supramolecular arrangements.

摘要

过渡金属基化合物已显示出作为治疗剂的有前途的用途。在它们独特的特性中,这些化合物适合与特定的生物靶标相互作用,使它们成为治疗各种疾病的重要潜在药物。铜化合物,其中 Casiopeinas 是一个很好的例子,已显示出作为替代当前癌症治疗方法的有希望的结果,部分原因是它们与 DNA 的插入特性。钒化合物因其药理学性质和应用而得到广泛研究,主要用于糖尿病,尽管最近,人们越来越有兴趣测试它们作为抗癌剂的活性。在本工作中,获得了两种化合物 [Cu(Metf)(bipy)Cl]Cl·2HO 和 [Cu(Impy)(Gly)(HO)]VO,并通过可见和 FTIR 光谱、单晶 X 射线衍射和理论方法进行了表征。使用具有色散 APFD 的奥斯汀-弗里希-彼得森函数和 6-311 + G(2d,p)基组,通过密度泛函理论 (DFT) 计算了化合物的结构和电子性质。使用 Hirshfeld 表面分析 (HSA) 和分子中的原子分析 (AIM) 分析了非共价相互作用。此外,还进行了对接分析以测试 Casiopeina 样配合物与 DNA/RNA 的相互作用。这些化合物提供了可以与关键生物靶标相互作用的金属。此外,它们显示出有趣的非共价相互作用,这是它们超分子排列的原因。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/aa6b/7587343/c4180b5e7649/molecules-25-04679-g001.jpg

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