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Nanoengineered Encapsulation of Organic Microcrystal as Novel Biolabels

机译:有机微晶的纳米工程封装为新型Biolabels

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Immunoassays have been widely used as the standard technology for quantitative detection of analyte concentrations in the fields of medicine, environmental science, and food science. Immunoassays such as enzyme-linked immunosorbent assays (ELISA), fluorescence immunoassays (FIA), electrochemical immunoassay (EIA), immunoagglutination assays (IAA) and radioimmunoassays (RIA) are the most commonly used laboratory techniques. A novel class of biolabel system based on encapsulated organic microcrystals was introduced. The biolablels were constructed by encapsulating organic microcrsytals within ultrathin polyelectrolyte multilayers followed by conjugating with biomolecules. This biolabel system can achieve a high molar ratio of signal-generating molecules to biomolecules which provides a new strategy for signal amplification in bioassay. Various applications of organic microcrystal biolabels especially on the utilization of electrochemical-active microcrystal biolabels for bioassays will be introduced. Moreover, different strategies to improve the performance of the organic microcrystal biolabels will be discussed.
机译:免疫测定已被广泛用作医学,环境科学和食品科学领域分析物浓度定量检测的标准技术。免疫测定如酶联免疫吸附试验(ELISA),荧光免疫测定(FIA),电化学免疫测定(EIA),免疫凝集测定(IAA)和放射免疫测定(RIA)是最常用的实验室技术。介绍了一种基于封装有机微晶的新型Biolabel系统。通过将有机微聚合物在超薄聚电解质多层内包装的有机微粒,然后与生物分子缀合来构建生物抗原。该Biolabel系统可以实现信号产生分子与生物分子的高摩尔比,这提供了生物测定中的信号放大的新策略。介绍有机微晶生物标签的各种应用,特别是在利用用于生物测定的电化学活性微晶Biolabels。此外,将讨论改善有机微晶生物标签性能的不同策略。

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