首页> 外文期刊>Analytical chemistry >ON LINE COMPETITIVE IMMUNOASSAY FOR INSULIN BASED ON CAPILLARY ELECTROPHORESIS WITH LASER INDUCED FLUORESCENCE DETECTION
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ON LINE COMPETITIVE IMMUNOASSAY FOR INSULIN BASED ON CAPILLARY ELECTROPHORESIS WITH LASER INDUCED FLUORESCENCE DETECTION

机译:基于毛细管电泳和激光诱导荧光检测的胰岛素在线竞争性免疫分析

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摘要

An on-line competitive immunoassay for insulin has been developed and applied to monitoring insulin concentration in a flowing stream, In the assay, solutions of fluorescein-labeled insulin (FITC-insulin), monoclonal anti-insulin, and sample containing insulin are pumped into a cross where they begin to mix, The mixture flows through a fused silica reactor capillary to a flow-gated interface, During transfer to the interface, insulin and FITC-insulin compete to form a complex with the antibody, At the interface, a plug of the mixture is injected into a separation capillary, where the bound and free FITC-insulin are separated and detected by capillary electrophoresis with laser-induced fluorescence detection, The amount of bound FITC-insulin, amount of free FITC-insulin, or bound/free ratio can be used to quantify insulin concentration, Typical relative standard deviations of bound over free ratio are 5%. The detection limit of the immunoassay in the on-line mode is <0.3 nM. Each separation requires as little as 3 s, and over 1600 consecutive assays can be acquired with no need to rinse the separation capillary, Thus, the system can be used to monitor insulin in a flowing stream for now injection analysis or for sensor-like monitoring. Dilution and zone broadening during transfer of sample to the interface limit the response time of the on-line system to about 25 s. As a demonstration of the on-line immunoassay, the insulin content of single islets of Langerhans was determined by flow injection analysis.
机译:已经开发了一种在线胰岛素竞争性免疫测定法,并将其用于监测流动流中的胰岛素浓度。在该测定法中,将荧光素标记的胰岛素(FITC-胰岛素),单克隆抗胰岛素溶液和含胰岛素的样品溶液泵入他们开始混合的十字架,混合物通过熔融石英反应器毛细管流至流动门控界面,在转移至界面期间,胰岛素和FITC-胰岛素与抗体竞争形成复合物。在界面处,塞子将混合物的混合物注入分离毛细管中,在此处分离结合的和游离的FITC胰岛素,并通过毛细管电泳和激光诱导的荧光检测进行检测,结合的FITC胰岛素的量,游离的FITC胰岛素的量或结合的/游离比率可用于定量胰岛素浓度。游离比率的典型相对标准偏差为5%。在线模式下免疫测定的检测限为<0.3 nM。每次分离只需3 s,并且无需冲洗分离毛细管即可进行1600多次连续测定,因此,该系统可用于监测流动物流中的胰岛素,以用于现在的注射分析或类似传感器的监测。在样品转移到界面的过程中,稀释和区域加宽将在线系统的响应时间限制在约25 s。作为在线免疫测定的证明,朗格汉斯单胰岛的胰岛素含量通过流动注射分析确定。

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