Immunodetection of Poorly Soluble Substances: Limitations and Their Overcoming.

IF 4.2 2区 化学 Q1 CHEMISTRY, ANALYTICAL
Berlina A N, Hendrickson O D, Komova N S, Zherdev A V, Dzantiev B B
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引用次数: 0

Abstract

Immunoassays based on the specific antigen-antibody interactions are efficient tools to detect various compounds and estimate their content. Usually, these assays are implemented in water-saline media with composition close to physiological conditions. However, many substances are insoluble or cannot be molecularly dispersed in such media, which objectively creates problems when interacting in aquatic environments. Thus, obtaining immunoreactants and implementing immunoassays of these substances need special methodological solutions. Hydrophobicity of antigens as well as their limited ability to functionalization and conjugation are often overlooked when developing immunoassays for these compounds. The main key finding is the possibility to influence the behavior of hydrophobic compounds for immunoassays, which requires specific approaches summarized in the review. Using the examples of two groups of compounds-surfactants (alkyl- and bisphenols) and fullerenes, we systematized the existing knowledge and experience in the development of immunoassays. This review addresses the challenges of immunodetection of poorly soluble substances and proposes solutions such as the use of hydrotropes, other solubilization techniques, and alternative receptors (aptamers and molecularly imprinted polymers).

难溶性物质的免疫检测:局限性及其克服。
基于特异性抗原-抗体相互作用的免疫测定是检测各种化合物并估计其含量的有效工具。通常,这些检测方法都是在成分接近生理条件的水-碱性介质中进行的。然而,许多物质在这种介质中不溶解或不能分子分散,这在客观上给水生环境中的相互作用带来了问题。因此,获得这些物质的免疫反应物并对其进行免疫测定需要特殊的方法解决方案。在开发这些化合物的免疫测定时,抗原的疏水性及其有限的官能化和共轭能力往往被忽视。主要的关键发现是有可能影响疏水性化合物在免疫测定中的行为,这需要采用综述中总结的特定方法。我们以表面活性剂(烷基酚和双酚)和富勒烯这两类化合物为例,系统地介绍了开发免疫测定的现有知识和经验。本综述探讨了免疫检测难溶性物质所面临的挑战,并提出了解决方案,如使用氢化剂、其他增溶技术和替代受体(aptamers 和分子印迹聚合物)。
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
CiteScore
12.00
自引率
4.00%
发文量
137
审稿时长
6 months
期刊介绍: Critical Reviews in Analytical Chemistry continues to be a dependable resource for both the expert and the student by providing in-depth, scholarly, insightful reviews of important topics within the discipline of analytical chemistry and related measurement sciences. The journal exclusively publishes review articles that illuminate the underlying science, that evaluate the field''s status by putting recent developments into proper perspective and context, and that speculate on possible future developments. A limited number of articles are of a "tutorial" format written by experts for scientists seeking introduction or clarification in a new area. This journal serves as a forum for linking various underlying components in broad and interdisciplinary means, while maintaining balance between applied and fundamental research. Topics we are interested in receiving reviews on are the following: · chemical analysis; · instrumentation; · chemometrics; · analytical biochemistry; · medicinal analysis; · forensics; · environmental sciences; · applied physics; · and material science.
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