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从结合机制、结构和 IgE 结合变化探讨金纳米粒子对β-乳球蛋白脱敏作用。

Probing gold nanoparticles for the desensitization to β-lactoglobulin from binding mechanism, structure and IgE binding changes.

机构信息

School of Food Science & Engineering, Qilu University of Technology, 250353 Jinan, China.

School of Public Health, Chengdu University of Traditional Chinese Medicine, 610075 Chengdu, China.

出版信息

Food Chem. 2021 Apr 16;342:128329. doi: 10.1016/j.foodchem.2020.128329. Epub 2020 Oct 8.

Abstract

Because of the adsorption of proteins, gold nanoparticles (AuNPs) create potential biological risks in biomedicine, leading to the formation of the protein corona. This adsorption is mainly due to the formation of gold-sulfur (AuS) covalent bonds between the AuNPs and the -SH groups, causing bioactivity denaturation and biological problems; however, it could also lead to some biological benefits. We explored AuNPs as a potential material for desensitization to allergens, such as β-lactoglobulin (βLG). To address the desensitization of AuNPs, we investigated the binding mechanism and the specific relationship of the time evolution of AuS bond, secondary structure, and allergy changes. The formation of AuS bond takes approximately 9 h, consistent with the complete changes time in secondary structure and immunoglobulin E (IgE) combining capacity of the βLG, decreasing allergic reactions. These results indicate that AuNPs have the potential to minimize allergic reactions in the future.

摘要

由于蛋白质的吸附作用,金纳米粒子(AuNPs)在生物医药中产生潜在的生物风险,导致蛋白质冠的形成。这种吸附主要是由于 AuNPs 和 -SH 基团之间形成的金-硫(AuS)共价键,导致生物活性变性和生物问题;然而,它也可能带来一些生物益处。我们探索了 AuNPs 作为一种潜在的变应原脱敏材料,如β-乳球蛋白(βLG)。为了解决 AuNPs 的脱敏问题,我们研究了 AuS 键的结合机制以及二级结构和过敏变化的时间演化的特定关系。AuS 键的形成大约需要 9 小时,与二级结构和βLG 的免疫球蛋白 E(IgE)结合能力的完全变化时间一致,从而减少过敏反应。这些结果表明,AuNPs 有可能在未来最小化过敏反应。

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