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Study of Enzyme Kinetics using Capacitive Biosensor-An Alternate to Colorimeter

机译:电容式生物传感器的酶动力学研究-比色计的替代品

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A novel sensor approach based on measurement of changes in capacitance of an electrochemical cell produced during enzyme catalyzed formation of products is described. The electrochemical property such as capacitance of an electrolyte between electrochemical cell depends on its ionic compositions, in turn depends on the resulting ionic constituents caused by catalytic action of the enzyme. Generation of micromolar (μM) concentration of ionic species causes large changes in capacitance that is measurable in picofarad (pF) range in capacitive electrodes. Broad clinical analytical application of this technique is demonstrated in this report by application to diagnostically valued enzymes measurements like pyrophosphatases and phosphatases. Specific measurements of enzyme activities were achieved over the concentration range of 0.125 – 5.0 mM of respective substrates. The performance of the electrochemical sensor based enzyme biochemical assays were compared directly with identical assays employing spectrophotometric detection and found to match well.
机译:描述了一种新颖的传感器方法,该方法基于在酶催化产物形成过程中产生的电化学电池电容变化的测量。电化学性质,例如电化学电池之间的电解质电容,取决于其离子组成,进而取决于由酶的催化作用引起的所得离子成分。离子种类的微摩尔(μM)浓度的产生会引起电容的大变化,这在电容性电极的微微法拉(pF)范围内可测量。该报告通过将其应用于具有诊断价值的酶测定中,如焦磷酸酶和磷酸酶,证明了该技术的广泛临床分析应用。在各个底物的浓度范围为0.125 – 5.0 mM的条件下,可以对酶活性进行特定的测量。将基于电化学传感器的酶生化测定法的性能与采用分光光度法检测的相同测定法直接进行比较,发现匹配良好。

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