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Development of a microfluidic confocal fluorescence detection system for the hyphenation of nano-LC to on-line biochemical assays

机译:开发用于纳米LC联用到在线生化分析的微流共聚焦荧光检测系统

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One way to profile complex mixtures for receptor affinity is to couple liquid chromatography (LC) on-line to biochemical detection (BCD). A drawback of this hyphenated screening approach is the relatively high consumption of sample, receptor protein and (fluorescently labeled) tracer ligand. Here, we worked toward minimization of sample and reagent consumption, by coupling nano-LC on-line to a light-emitting diode (LED) based capillary confocal fluorescence detection system capable of on-line BCD with low-flow rates. In this fluorescence detection system, a capillary with an extended light path (bubble cell) was used as a detection cell in order to enhance sensitivity. The technology was applied to a fluorescent enhancement bioassay for the acetylcholine binding protein, a structural analog of the extracellular ligand-binding domain of neuronal nicotinic acetylcholine receptors. In the miniaturized setup, the sensitive and low void volume LED-induced confocal fluorescence detection system operated in flow injection analysis mode allowing the measurement of IC50 values, which were comparable with those measured by a conventional plate reader bioassay. The current setup uses 50 nL as injection volume with a carrier flow rate of 400 nL/min. Finally, coupling of the detection system to gradient reversed-phase nano-LC allowed analysis of mixtures in order to identify the bioactive compounds present by injecting 10 nL of each mixture.
机译:分析复杂混合物的受体亲和力的一种方法是将液相色谱(LC)在线连接到生化检测(BCD)。这种联用筛选方法的缺点是样品,受体蛋白和(荧光标记的)示踪配体的消耗量相对较高。在这里,我们致力于通过将纳米LC在线耦合到基于发光二极管(LED)的毛细管共聚焦荧光检测系统来使样品和试剂消耗最小化,该系统能够以低流速在线BCD。在该荧光检测系统中,为了提高灵敏度,使用了光路延长的毛细管(气泡池)作为检测池。该技术已应用于乙酰胆碱结合蛋白的荧光增强生物测定,乙酰胆碱结合蛋白是神经元烟碱型乙酰胆碱受体的细胞外配体结合域的结构类似物。在小型化设置中,灵敏且低空隙体积的LED诱导的共聚焦荧光检测系统以流动注射分析模式运行,可以测量IC 50 值,这与传统的酶标仪可比较生物测定。当前设置使用50 nL作为进样量,载流子流速为400 nL / min。最后,将检测系统与梯度反相纳米LC偶联,可以对混合物进行分析,以便通过注入每种混合物10 nL来鉴定存在的生物活性化合物。

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