Graduate School of Genome Science and Technology, University of Tennessee-Oak Ridge National Laboratory, Knoxville, Tennessee 37996, United States.
Anal Chem. 2012 Jan 17;84(2):1092-7. doi: 10.1021/ac202726n. Epub 2011 Dec 27.
Advancements in nanoscale fabrication allow creation of small-volume reaction containers that can facilitate the screening and characterization of enzymes. A porous, ∼19 pL volume vessel has been used in this work to carry out enzyme reactions under varying substrate concentrations. Assessment of small-molecule and green fluorescent protein diffusion from the vessels indicates that pore sizes on the order of 10 nm can be obtained, allowing capture of proteins and diffusive exchange of small molecules. Glucose oxidase and horseradish peroxidase can be contained in these structures and diffusively fed with a solution containing glucose and the fluorogenic substrate amplex red through the engineered nanoscale pore structure. Fluorescent microscopy was used to monitor the reaction, which was carried out under microfluidic control. Kinetic characteristics of the enzyme (K(m) and V(max)) were evaluated and compared with results from conventional scale reactions. These picoliter, nanoporous containers can facilitate quick determination of enzyme kinetics in microfluidic systems without the requirement of surface tethering and can be used for applications in drug discovery, clinical diagnostics, and high-throughput screening.
纳米制造技术的进步使得能够制造出小体积的反应容器,从而方便对酶进行筛选和特性分析。在这项工作中,使用了一个多孔的、约 19 微升体积的容器,在不同的底物浓度下进行酶反应。从小分子和绿色荧光蛋白从容器中的扩散评估来看,可以获得尺寸在 10nm 左右的孔径,从而能够捕获蛋白质并允许小分子进行扩散交换。葡萄糖氧化酶和辣根过氧化物酶可以被包含在这些结构中,并通过工程纳米级孔结构以扩散的方式用含有葡萄糖和荧光底物 Amplex Red 的溶液进行喂养。荧光显微镜用于监测反应,该反应在微流控控制下进行。评估了酶的动力学特性(K(m)和 V(max)),并将其与传统规模反应的结果进行了比较。这些皮升级、纳米多孔容器可以方便地在微流控系统中快速确定酶的动力学特性,而无需表面连接,可用于药物发现、临床诊断和高通量筛选等应用。