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首页> 外文期刊>Analytical chemistry >Enzymatic reactions in microfluidic devices: Michaelis-Menten kinetics
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Enzymatic reactions in microfluidic devices: Michaelis-Menten kinetics

机译:微流控装置中的酶促反应:Michaelis-Menten动力学

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Kinetic rate constants for enzymatic reactions are typically measured with a series of experiments at different substrate concentrations in a well-mixed container. Here we demonstrate a microfluidic technique for measuring Michaelis-Menten rate constants with only a single experiment. Enzyme and substrate are brought together in a coflow microfluidic device, and we establish analytically and numerically that the initial concentration of product scales with the distance x along the channel as x(5/2). Measurements of the initial rate of product formation, combined with the quasi-steady rate of product formation further downstream, yield the rate constants. We corroborate the x(5/2) scaling result experimentally using the bioluminescent reaction between ATP and luciferase/luciferin as a model system.
机译:酶促反应的动力学速率常数通常是通过一系列实验在充分混合的容器中不同底物浓度下进行的。在这里,我们展示了仅通过一个实验即可测量米利斯(Michaelis)-曼滕(Mentis)速率常数的微流技术。酶和底物在同流微流控设备中聚集在一起,我们通过分析和数值方法确定了产物的初始浓度随沿通道的距离x缩放为x(5/2)。初始产品形成速率的测量,再与下游产品形成的准稳态速率相结合,得出速率常数。我们使用ATP和荧光素酶/荧光素之间的生物发光反应作为模型系统,通过实验证实了x(5/2)缩放结果。

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