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新型抗真菌 -(4-芳基/环己基)-2-(吡啶-4-基羰基) 腙硫代甲酰胺衍生物与牛血清白蛋白的毒性研究及结合分析。

Toxicity Study and Binding Analysis of Newly Synthesized Antifungal -(4-aryl/cyclohexyl)-2-(pyridine-4-yl carbonyl) hydrazinecarbothioamide Derivative with Bovine Serum Albumin.

机构信息

Department of Pharmaceutical Chemistry, College of Pharmacy, King Saud University, P.O. Box 2457, Riyadh 11451, Saudi Arabia.

Department of Biochemistry, College of Science, King Saud University, P.O. Box 22452, Riyadh 11451, Saudi Arabia.

出版信息

Int J Mol Sci. 2023 Mar 3;24(5):4942. doi: 10.3390/ijms24054942.

Abstract

The presence of the p-aryl/cyclohexyl ring in the -(4-aryl/cyclohexyl)-2-(pyridine-4-yl carbonyl) hydrazine carbothioamide derivative (2C) is reported to enhance the antifungal properties when compared to those of itraconazole. Serum albumins present in plasma bind and transport ligands, including pharmaceuticals. This study explored 2C interactions with BSA using spectroscopic methods such as fluorescence and UV-visible spectroscopy. In order to acquire a deeper comprehension of how BSA interacts with binding pockets, a molecular docking study was carried out. The fluorescence of BSA was quenched by 2C via a static quenching mechanism since a decrease in quenching constants was observed from 1.27 × 10 to 1.14 × 10. Thermodynamic parameters indicated hydrogen and van der Waals forces responsible for the BSA-2C complex formation with binding constants ranging between 2.91 × 10 and 1.29 × 10, which suggest a strong binding interaction. Site marker studies displayed that 2C binds to BSA's subdomains IIA and IIIA. Molecular docking studies were conducted to further comprehend the molecular mechanism of the BSA-2C interaction. The toxicity of 2C was predicted by Derek Nexus software. Human and mammalian carcinogenicity and skin sensitivity predictions were associated with a reasoning level of equivocal, inferring 2C to be a potential drug candidate.

摘要

-(4-芳基/环己基)-2-(吡啶-4-基羰基)肼甲硫酰胺衍生物(2C)中存在的对芳基/环己基环被报道能增强抗真菌性能,与依曲康唑相比。血浆中的血清白蛋白结合并转运配体,包括药物。本研究使用荧光和紫外可见光谱等光谱方法探索了 2C 与 BSA 的相互作用。为了更深入地了解 BSA 如何与结合口袋相互作用,进行了分子对接研究。2C 通过静态猝灭机制猝灭 BSA 的荧光,因为猝灭常数从 1.27×10 降至 1.14×10。热力学参数表明,氢键和范德华力是导致 BSA-2C 复合物形成的原因,结合常数在 2.91×10 和 1.29×10 之间,表明存在强烈的结合相互作用。位点标记研究表明,2C 结合到 BSA 的亚结构域 IIA 和 IIIA。进行了分子对接研究以进一步理解 BSA-2C 相互作用的分子机制。Derek Nexus 软件预测了 2C 的毒性。人类和哺乳动物致癌性和皮肤敏感性预测与推理水平的不明确相关,推断 2C 可能是一种潜在的药物候选物。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/3038/10002925/def1fac034df/ijms-24-04942-g001.jpg

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