ACS Nano. 2014 Aug 26;8(8):8278-84. doi: 10.1021/nn502678t.
The sensing of enzymatic processes in volumes at or below the scale of single cells is challenging but highly desirable in the study of biochemical processes. Here we demonstrate a nanofluidic device that combines an enzymatic recognition element and electrochemical signal transduction within a six-femtoliter volume. Our approach is based on localized immobilization of the enzyme tyrosinase in a microfabricated nanogap electrochemical transducer. The enzymatic reaction product quinone is localized in the confined space of a nanochannel in which efficient redox cycling also takes place. Thus, the sensor allows the sensitive detection of minute amounts of product molecules generated by the enzyme in real time. This method is ideally suited for the study of ultra-small-volume systems such as the contents of individual biological cells or organelles.
在单细胞规模或以下的体积中感应酶促过程具有挑战性,但在生化过程研究中非常理想。在这里,我们展示了一种纳流控装置,该装置在六皮升的体积内结合了酶识别元件和电化学信号转导。我们的方法基于在微制造的纳米间隙电化学换能器中局部固定化酶酪氨酸酶。酶反应产物醌被局限在纳米通道的受限空间内,其中也发生有效的氧化还原循环。因此,该传感器能够实时灵敏地检测酶产生的微量产物分子。这种方法非常适合研究超小体积系统,如单个生物细胞或细胞器的内容物。