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首页> 外文期刊>Analytical chemistry >BILAYER LIPID MEMBRANES FOR FLOW INJECTION MONITORING OF ACETYLCHOLINE, UREA, AND PENICILLIN
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BILAYER LIPID MEMBRANES FOR FLOW INJECTION MONITORING OF ACETYLCHOLINE, UREA, AND PENICILLIN

机译:双层脂质膜,用于流动注射监测乙酰胆碱,尿素和青霉素

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摘要

This work describes a technique for the rapid and sensitive determination of acetylcholine, urea, and penicillin in flowing solution streams using stabilized systems of solventless bilayer lipid membranes (BLMs). This method of monitoring substrates of hydrolytic enzyme reactions made use of BLMs which were supported on ultrafiltration membranes such as polycarbonate and glass microfiber; these filter membranes were found to enhance the stability of BLMs for uses in flow injection experiments, The enzymes were immobilized on BLMs by incorporating the protein solution into the lipid matrix at the air/electrolyte interface before the BLM formation, followed by injections of the substrates into flowing streams of a carrier electrolyte solution, Hydronium ions produced by the enzymatic reaction at the BLM surface caused dynamic alterations of the electrostatic fields and phase structure of BLMs, and as a result ion current transients were obtained; the magnitude of these signals was correlated to the substrate concentration, which could be determined at the micromolar level. The response times were ca, 10 s, and acetylcholine, urea, and penicillin could be determined in continuous flowing systems with a maximum rate of 220 samples/h. It is expected that this analytical utility of stabilized BLMs for flow stream uses will provide new opportunities in this strategy of chemical sensing.
机译:这项工作描述了一种使用稳定的无溶剂双层脂质膜(BLM)系统快速,灵敏地测定流动溶液中乙酰胆碱,尿素和青霉素的技术。这种监测水解酶反应底物的方法利用了BLM,这些BLM被支撑在超滤膜上,例如聚碳酸酯和玻璃微纤维。发现这些滤膜可增强BLM的稳定性,以用于流动注射实验。通过在BLM形成之前将蛋白质溶液掺入空气/电解质界面的脂质基质中,将酶固定在BLM上,然后注入底物在载体电解质溶液的流动物流中,BLM表面的酶促反应产生的氢离子引起BLM的静电场和相结构的动态变化,从而获得离子电流瞬变。这些信号的强度与底物浓度相关,可以在微摩尔水平上确定。响应时间约为10 s,可以在连续流动系统中测定乙酰胆碱,尿素和青霉素,最高速率为220个样品/小时。可以预期,这种稳定的BLM用于流动用途的分析实用程序将为这种化学传感策略提供新的机会。

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