Jung Yun Kyung, Lee Taemin, Shin Eeseul, Kim Byeong-Su
Interdisciplinary School of Green Energy, Ulsan National Institute of Science and Technology (UNIST), UNIST-gil 50, Eonyang-eup, Ulju-gun, Ulsan 689-798, Republic of Korea.
Sci Rep. 2013 Nov 28;3:3367. doi: 10.1038/srep03367.
A highly tunable layer-by-layer (LbL)-assembled graphene oxide (GO) array has been devised for high-throughput multiplex protein sensing. In this array, the fluorescence of different target-bound aptamers labeled with dye is efficiently quenched by GO through fluorescence resonance energy transfer (FRET), and simultaneous multiplex target detection is performed by recovering the quenched fluorescence caused by specific binding between an aptamer and a protein. Thin GO films consisting of 10 bilayers displayed a high quenching ability, yielding over 85% fluorescence quenching with the addition of a 2 μM dye-labeled aptamer. The limit for human thrombin detection in the 6- and 10-bilayered GO array is estimated to be 0.1 and 0.001 nM, respectively, indicating highly tunable nature of LbL assembled GO multilayers in controlling the sensitivity of graphene-based FRET aptasensor. Furthermore, the GO chip could be reused up to four times simply by cleaning it with distilled water.
一种高度可调节的逐层(LbL)组装氧化石墨烯(GO)阵列被设计用于高通量多重蛋白质传感。在该阵列中,通过荧光共振能量转移(FRET),被染料标记的不同目标结合适体的荧光被GO有效淬灭,并且通过恢复由适体与蛋白质之间的特异性结合引起的淬灭荧光来进行同时多重目标检测。由10个双层组成的薄GO膜表现出高淬灭能力,加入2μM染料标记的适体时产生超过85%的荧光淬灭。在6层和10层GO阵列中,人凝血酶检测限分别估计为0.1和0.001 nM,表明LbL组装的GO多层膜在控制基于石墨烯的FRET适体传感器灵敏度方面具有高度可调节性。此外,只需用蒸馏水清洗,GO芯片就可以重复使用多达四次。