Evaluation of Antiviral Activity of Lactoferrin in Bovine Milk Toward Fondaparinux Using Ordered Porous Layer Interferometry.

IF 6.7 1区 化学 Q1 CHEMISTRY, ANALYTICAL
Yu Zhang, Liming Liu, Yizhen Wan, Tianze Wang, Xiaoling Zheng, Bo Zhang, Dongmin Zhao, Huili Wang, Weiping Qian
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引用次数: 0

Abstract

Lactoferrin (LF) is a bioactive molecule that plays a pivotal role in innate immunity and is widely present in dairy products. It has been demonstrated to restrict viral infections by blocking binding sites on heparan sulfate (HS). However, existing analytical methods primarily focus on the LF content rather than its bioactivity, highlighting the need for a dedicated approach to antiviral LF analysis. Developing an appropriate tool for antiviral LF analysis in dairy products is crucial for consumer welfare and product quality control, as the daily intake of LF-rich products offers significant health benefits. However, in one of the primary LF-rich dietary sources, bovine milk, the main limitation of current analysis methods is the lack of an efficient receptor for characterizing antiviral LF. In this study, we developed fondaparinux as a promising receptor for antiviral LF analysis and introduced ordered porous layer interferometry (OPLI) for real-time, in situ monitoring of antiviral LF. Furthermore, we compared the proposed method with the enzyme-linked immunosorbent assay (ELISA) and evaluated antiviral LF content across different milk samples.

用有序孔层干涉法评价牛奶中乳铁蛋白对Fondaparinux的抗病毒活性。
乳铁蛋白(LF)是一种生物活性分子,在先天免疫中起着关键作用,广泛存在于乳制品中。它已被证明通过阻断硫酸肝素(HS)的结合位点来限制病毒感染。然而,现有的分析方法主要关注LF含量而不是其生物活性,这突出了需要一种专门的抗病毒LF分析方法。开发一种适当的工具来分析乳制品中的LF病毒对消费者福利和产品质量控制至关重要,因为每天摄入富含LF的产品对健康有很大好处。然而,在富含LF的主要膳食来源之一牛乳中,目前分析方法的主要限制是缺乏表征抗病毒LF的有效受体。在这项研究中,我们开发了fondaparinux作为抗病毒LF分析的有前景的受体,并引入了有序多孔层干涉法(OPLI)用于抗病毒LF的实时原位监测。此外,我们将该方法与酶联免疫吸附试验(ELISA)进行了比较,并评估了不同牛奶样品中抗病毒LF的含量。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
Analytical Chemistry
Analytical Chemistry 化学-分析化学
CiteScore
12.10
自引率
12.20%
发文量
1949
审稿时长
1.4 months
期刊介绍: Analytical Chemistry, a peer-reviewed research journal, focuses on disseminating new and original knowledge across all branches of analytical chemistry. Fundamental articles may explore general principles of chemical measurement science and need not directly address existing or potential analytical methodology. They can be entirely theoretical or report experimental results. Contributions may cover various phases of analytical operations, including sampling, bioanalysis, electrochemistry, mass spectrometry, microscale and nanoscale systems, environmental analysis, separations, spectroscopy, chemical reactions and selectivity, instrumentation, imaging, surface analysis, and data processing. Papers discussing known analytical methods should present a significant, original application of the method, a notable improvement, or results on an important analyte.
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