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首页> 外文期刊>Journal of biomolecular screening: The official journal of the Society for Biomolecular Screening >Colloidal aggregate detection by rapid fluorescence measurement of liquid surface curvature changes in multiwell plates
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Colloidal aggregate detection by rapid fluorescence measurement of liquid surface curvature changes in multiwell plates

机译:通过快速荧光测量多孔板中液体表面曲率变化的胶体聚集体检测

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摘要

A simple fluorescence method is reported for the detection of colloidal aggregate formation in solution, with specific applications to determine the critical micelle concentration (CMC) of surfactants and detect small-molecule promiscuous inhibitors. The method exploits the meniscus curvature changes in high-density multiwell plates associated with colloidal changes in solution. C C The shape of the meniscus has a significant effect on fluorescence intensity when detected using a top-read fluorescence plate reader because of the effect of total internal reflection on fluorescence emission through a curved liquid surface. A dynamic range of 60% is calculated and observed and is measured with a relative sensitivity of 2%. Facile determination of the CMC of a variety of surfactants is demonstrated. as well as a screening-assay for aggregate forming properties of small drug-like compounds. a common cause of promiscuous inhibition in high-throughput screening (HTS) enzyme inhibitor assays. Our preliminary results show a potential HTS assay with Z' factor of 0.76, with good separation between aggregating and nonaggregating small molecules. The method combines the high sensitivity and universality of classic surface tension methods with simplicity and high throughput determination, enabling facile detection of molecular interactions involving a change in liquid or solid surface character.
机译:据报道,一种简单的荧光方法可用于检测溶液中胶体聚集体的形成,其特定用途是确定表面活性剂的临界胶束浓度(CMC)和检测小分子混杂抑制剂。该方法利用与溶液中胶体变化相关的高密度多孔板的弯月面曲率变化。 C C当使用顶部读取荧光板读取器检测时,弯月面的形状对荧光强度有显着影响,这是因为全内反射对通过弯曲液体表面的荧光发射的影响。计算并观察到60%的动态范围,并以2%的相对灵敏度进行测量。已证明可以轻松测定各种表面活性剂的CMC。以及针对小型药物样化合物的聚集体形成特性的筛选测定。高通量筛选(HTS)酶抑制剂测定中混杂抑制的常见原因。我们的初步结果表明,潜在的HTS分析的Z'因子为0.76,在聚集的小分子与未聚集的小分子之间具有良好的分离。该方法将经典的表面张力方法的高灵敏度和通用性与简单性和高通量测定相结合,可轻松检测涉及液体或固体表面特征变化的分子相互作用。

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