含1,2-双(4-吡啶基)乙烯和4,4 ' -偶氮吡啶的zn - mof:开启抗真菌研究的新领域

IF 2.2 4区 化学
Seo Yeon Heo, Dae Yong Kim, Young Sok Yun, Tae Keun Kwon, Inhong Jung, Young Jae Lee, Youngmee Kim, Suk Joong Lee
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引用次数: 0

摘要

金属有机骨架(mof)由于其结构的通用性和功能的可调性而受到广泛关注。本研究分别以bpe和AZPY为配体,通过溶剂热反应合成了1-bpe和2-AZPY两种zn - mof。系统评价了这些MOFs对枝孢霉、黑孢霉和白色念珠菌的抗真菌活性。结构表征证实了这两种mof为双重互穿框架,热稳定性高达300°C。抗真菌试验表明,与1-bpe相比,2-AZPY具有更好的抗真菌效果。2 mg/mL浓度下,2- azpy对黑曲霉的灭活效果为95%,对枝孢霉的灭活效果为61%,而1-bpe的抑菌效果相对较弱。2-AZPY抗真菌活性的增强归因于AZPY配体的释放,AZPY配体促进真菌蛋白中的硫醇氧化,导致细胞失活。通过将2-AZPY加入聚乙烯醇(PVA)纳米纤维基体中,形成2-AZPY@PVA,进一步改进了该材料。该复合材料显著增强了抗真菌性能,实现了几乎完全失活的所有测试真菌物种。这些发现强调了azpy功能化mof在靶向抗真菌应用中的潜力,特别是当整合到纳米纤维材料中以提高生物利用度和稳定性时。这些结果突出了mof在开发有效的环境和医疗抗真菌剂方面的重要作用。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Zn-MOFs incorporating 1,2-bis(4-pyridyl)ethylene and 4,4′-azopyridine: Unlocking new frontiers in antifungal research

Metal–organic frameworks (MOFs) have gained significant attention for their antimicrobial properties due to their structural versatility and functional tunability. In this study, two Zn-MOFs, namely, 1-bpe and 2-AZPY, were synthesized using bpe and AZPY ligands, respectively, via solvothermal reactions. These MOFs were systematically evaluated for their antifungal activities against C. cladosporioides, A. niger, and C. albicans. Structural characterization confirmed both MOFs as two-fold interpenetrated frameworks with thermal stability up to 300 °C. Antifungal tests demonstrated that 2-AZPY exhibited superior antifungal efficacy compared to 1-bpe. At a concentration of 2 mg/mL, 2-AZPY achieved 95% inactivation of A. niger and 61% inactivation of C. cladosporioides, while 1-bpe showed relatively weaker antifungal performance. The enhanced antifungal activity of 2-AZPY is attributed to the release of AZPY ligands, which promote thiol oxidation in fungal proteins, leading to cellular inactivation. Further improvement was achieved by incorporating 2-AZPY into a polyvinyl alcohol (PVA) nanofiber matrix, forming 2-AZPY@PVA. This composite significantly enhanced antifungal performance, achieving nearly complete inactivation of all tested fungal species. These findings underscore the potential of AZPY-functionalized MOFs for targeted antifungal applications, particularly when integrated into nanofiber materials for enhanced bioavailability and stability. The results highlight the promising role of MOFs in developing effective antifungal agents for environmental and medical applications.

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来源期刊
Bulletin of the Korean Chemical Society
Bulletin of the Korean Chemical Society Chemistry-General Chemistry
自引率
23.50%
发文量
182
期刊介绍: The Bulletin of the Korean Chemical Society is an official research journal of the Korean Chemical Society. It was founded in 1980 and reaches out to the chemical community worldwide. It is strictly peer-reviewed and welcomes Accounts, Communications, Articles, and Notes written in English. The scope of the journal covers all major areas of chemistry: analytical chemistry, electrochemistry, industrial chemistry, inorganic chemistry, life-science chemistry, macromolecular chemistry, organic synthesis, non-synthetic organic chemistry, physical chemistry, and materials chemistry.
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