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卵转铁蛋白-绿原酸复合物经高强度超声(HIU)增强的免疫调节活性:结构-功能关系研究。

Immunomodulatory activity of ovotransferrin-chlorogenic acid complexes enhanced by high-intensity ultrasound (HIU): A structure-function relationship study.

机构信息

School of Food Science and Technology, Jiangnan University, Wuxi, Jiangsu 214122, China; Faculty of Science, National University of Singapore, S14 Science Drive 2, Singapore 117542, Singapore.

Faculty of Science, National University of Singapore, S14 Science Drive 2, Singapore 117542, Singapore; Thai Nguyen University of Agriculture and Forestry, Quyet Thang commune, Thai Nguyen city 24119, Viet Nam.

出版信息

Int J Biol Macromol. 2024 Oct;278(Pt 1):134635. doi: 10.1016/j.ijbiomac.2024.134635. Epub 2024 Aug 10.

Abstract

This study investigated the impact of high-intensity ultrasound (HIU) treatment on the physiochemical, conformational, and immunomodulatory activity of the OVT-CA complex, emphasizing the structure-function relationship. HIU treatment reduced particle size, improved dispersion, and increased electronegativity of the complex. It facilitated binding between OVT and CA, achieving a maximum degree of 45.22 mg/g CA grafting and reducing interaction time from 2 h to 15 min. HIU-induced cavitation and shear promoted the exposure of -SH and unfolding of OVT, leading to increased surface hydrophobicity of the complex and transformation of its structure from β-sheet to α-helix. Additionally, CA binds to OVT in the C-lobe region, and HIU treatment modulates the intermolecular forces governing the complex formation, particularly by reinforcing hydrogen bonding, hydrophobic interactions, and introducing electrostatic interactions. Furthermore, HIU treatment increased the immunomodulatory activity of the complex, which was attributed to complex structural changes facilitating enhanced cell membrane affinity, antigen recognition, and B-cell epitope availability. Hierarchical cluster and Pearson correlation analysis confirmed that HIU treatment duration had a greater impact than power on both the structure and activity of the complex, and an optimal HIU treatment duration within 30 min was found to be crucial for activity enhancement. Moreover, structural changes, including ζ-potential, particle size/turbidity, and surface hydrophobicity, were closely correlated with immunomodulatory activity. This study highlights the potential application of HIU in developing protein-polyphenol immunomodulatory agents for public health and food nutrition.

摘要

本研究考察了高强度超声(HIU)处理对 OVT-CA 复合物的物理化学、构象和免疫调节活性的影响,强调了结构-功能关系。HIU 处理减小了颗粒大小,改善了复合物的分散性,并增加了其电负性。它促进了 OVT 和 CA 之间的结合,实现了最大程度的 45.22mg/g CA 接枝,并将相互作用时间从 2 小时缩短至 15 分钟。HIU 诱导的空化和剪切促进了 -SH 的暴露和 OVT 的展开,导致复合物的表面疏水性增加,结构从 β-折叠转变为 α-螺旋。此外,CA 在 C 结构域与 OVT 结合,并且 HIU 处理调节控制复合物形成的分子间力,特别是通过增强氢键、疏水相互作用和引入静电相互作用。此外,HIU 处理增加了复合物的免疫调节活性,这归因于复合物结构变化促进了增强的细胞膜亲和力、抗原识别和 B 细胞表位可用性。层次聚类和 Pearson 相关分析证实,HIU 处理持续时间对复合物的结构和活性的影响大于功率,并且发现 30 分钟内的最佳 HIU 处理持续时间对于增强活性至关重要。此外,结构变化,包括 ζ-电位、颗粒大小/浊度和表面疏水性,与免疫调节活性密切相关。本研究强调了 HIU 在开发用于公共卫生和食品营养的蛋白质-多酚免疫调节剂中的潜在应用。

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