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环保型合成具有抗菌作用的氧钒(IV)-(枞酸)配合物。

Eco-Friendly Synthesis of an Oxovanadium(IV)-(abietate) Complex with Antimicrobial Action.

机构信息

Department of Chemistry, Universidade Estadual do Centro-Oeste, UNICENTRO, Alameda Elio Antonio Dalla Vecchia, 838, Guarapuava 85040-167, PR, Brazil.

Department of Chemistry, Universidade Tecnológica Federal do Paraná, UTFPR, Via do Conhecimento, KM 01, Fraron, Pato Branco 85503-390, PR, Brazil.

出版信息

Molecules. 2022 Oct 7;27(19):6679. doi: 10.3390/molecules27196679.

Abstract

The search for less expensive and viable products is always one of the challenges for research development. Commonly, the synthesis of coordination compounds involves expensive ligands, through expensive and low-yield routes, in addition to generating toxic and unusable residues. In this work, the organic ligand used is derived from the resin of a reforestation tree, Pinus elliottii var. elliottii. The synthesis method used Pinus resin and an aqueous solution of vanadium(III) chloride at a temperature of 80 °C. The procedure does not involve organic solvents and does not generate toxic residues, thus imparting the complex formation reaction a green chemistry character. The synthesis resulted in an unprecedented oxovanadium(IV)-bis(abietate) complex, which was characterized by mass spectrometry (MS), chemical analysis (CHN), vibrational (FTIR) and electronic spectra (VISIBLE), X-ray diffraction (XRD), and thermal analysis (TG/DTA). Colorimetric studies were performed according to the CIELAB color space. The structural formula found, consisted of a complex containing two abietate ligands, [VO(C20H29O2)2]. The VO(IV)-bis(abietate) complex was applied against microorganisms and showed promising results in antibacterial and antifungal activity. The best result of inhibitory action was against the strains of Gram-positive bacteria S. aureus and L. monocytogenes, with minimum inhibitory concentration (MIC) values of 62.5 and 125 μmol L−1, respectively. For Gram-negative strains the results were 500 μmol L−1 for E. coli; and 1000 μmol L−1 for Salmonella enterica Typhimurium. Antifungal activity was performed against Candida albicans, where the MIC was 15.62 μmol L−1, and for C. tropicalis it was 62.5 μmol L−1. According to the MFC analysis, the complex presented, in addition to the fungistatic action, a fungicidal action, as there was no growth of fungi on the plates tested. The results found for the tests demonstrate that the VO(IV)-bis(abietate) complex has great potential as an antimicrobial and mainly antifungal agent. In this way, the pigmented ink with antimicrobial activity could be used in environments with a potential risk of contamination, preventing the spread of microorganisms harmful to health.

摘要

寻找更廉价和可行的产品一直是研究开发的挑战之一。通常,配合物的合成涉及昂贵的配体,通过昂贵且收率低的路线,此外还会产生有毒且不可用的残留物。在这项工作中,所用的有机配体来自再造林树种 Pinus elliottii var. elliottii 的树脂。所使用的合成方法是在 80°C 的温度下将松树树脂与三氯化钒的水溶液混合。该过程不涉及有机溶剂,也不会产生有毒残留物,从而使配合物形成反应具有绿色化学性质。该合成得到了一种前所未有的氧化钒(IV)-双(枞酸)配合物,通过质谱(MS)、化学分析(CHN)、振动(FTIR)和电子光谱(VISIBLE)、X 射线衍射(XRD)和热分析(TG/DTA)进行了表征。根据 CIELAB 颜色空间进行了比色研究。发现的结构公式由一个包含两个枞酸配体的配合物组成,[VO(C20H29O2)2]。VO(IV)-双(枞酸)配合物对微生物具有应用价值,在抗菌和抗真菌活性方面表现出良好的效果。抑制作用的最佳结果是针对革兰氏阳性菌 S. aureus 和 L. monocytogenes,最小抑菌浓度(MIC)值分别为 62.5 和 125 μmol L−1。对于革兰氏阴性菌株,结果分别为 500 μmol L−1 的 E. coli 和 1000 μmol L−1 的 Salmonella enterica Typhimurium。抗真菌活性是针对 Candida albicans 进行的,其中 MIC 为 15.62 μmol L−1,而对 C. tropicalis 的 MIC 为 62.5 μmol L−1。根据 MFC 分析,所研究的配合物除了具有抑菌作用外,还具有杀菌作用,因为在测试的平板上没有真菌生长。测试结果表明,VO(IV)-双(枞酸)配合物具有作为抗菌剂和主要抗真菌剂的巨大潜力。通过这种方式,可以在存在潜在污染风险的环境中使用具有抗菌活性的有色墨水,防止对健康有害的微生物的传播。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/5153/9573124/1baef1b80957/molecules-27-06679-g001.jpg

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