纳米金刚石吸附万古霉素的络合物:络合动力学、组成和抗菌性能

IF 0.7 4区 化学 Q4 CHEMISTRY, PHYSICAL
T. Shen, M. G. Chernysheva, A. G. Popov, I. S. Chaschin, N. M. Anuchina, G. A. Badun
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引用次数: 0

摘要

制备了具有正负表面电荷的爆轰纳米金刚石吸附万古霉素的配合物。万古霉素在纳米金刚石上的吸附动力学用一个参数相似的拟二阶方程来描述。万古霉素-纳米金刚石络合反应动力学用拟一阶方程描述。利用放射性示踪剂和红外光谱分析发现,万古霉素的某些部分与纳米金刚石表面紧密结合,在洗涤过程中没有被去除。与负纳米金刚石配合物紧密结合的物质的数量是负纳米金刚石配合物的三倍。而万古霉素在阳性纳米金刚石上的保留强度较高,解吸过程中万古霉素含量变化不大。这两种复合物对金黄色葡萄球菌具有相同的抗菌特性。所得数据支持了纳米金刚石表面与水分子的氢键作用对万古霉素的吸附和保留起关键作用的假设。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Adsorption Complexes of Vancomycin with Nanodiamonds: Complexation Kinetics, Composition, and Antimicrobial Properties

Adsorption Complexes of Vancomycin with Nanodiamonds: Complexation Kinetics, Composition, and Antimicrobial Properties

Adsorption complexes of vancomycin with detonation nanodiamonds having positive and negative surface charges were obtained. The kinetics of vancomycin adsorption on nanodiamonds is described by a pseudo-second-order equation with similar parameters for both types of nanodiamonds. The kinetics of vancomycin–nanodiamond complexation is described by a pseudo-first-order equation. Using radioactive tracers and IR spectroscopy, it was found that some part of vancomycin is tightly bound to the nanodiamond surface and is not removed during washing. The amount of the tightly bound substance was three times greater for complexes with negative nanodiamonds. However, the retention strength of vancomycin on positive nanodiamonds was higher, and its content changed little during desorption over 10 days. Both types of complexes exhibit identical antimicrobial properties against Staphylococcus aureus. The data obtained support the hypothesis that hydrogen bonding with water molecules plays a key role in the adsorption and retention of vancomycin on the surface of nanodiamonds.

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来源期刊
CiteScore
1.20
自引率
14.30%
发文量
376
审稿时长
5.1 months
期刊介绍: Russian Journal of Physical Chemistry A. Focus on Chemistry (Zhurnal Fizicheskoi Khimii), founded in 1930, offers a comprehensive review of theoretical and experimental research from the Russian Academy of Sciences, leading research and academic centers from Russia and from all over the world. Articles are devoted to chemical thermodynamics and thermochemistry, biophysical chemistry, photochemistry and magnetochemistry, materials structure, quantum chemistry, physical chemistry of nanomaterials and solutions, surface phenomena and adsorption, and methods and techniques of physicochemical studies.
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