Kumar Karthik, Tang Clarence S, Rossetti Fernanda F, Textor Marcus, Keller Beat, Vörös Janos, Reimhult Erik
BioInterface Group, Laboratory of Surface Science and Technology, Swiss Federal Institute of Technology (ETH), Zürich, CH-8093 Zurich, Switzerland.
Lab Chip. 2009 Mar 7;9(5):718-25. doi: 10.1039/b814281e. Epub 2008 Nov 21.
Supported lipid bilayers (SLBs) are ideal platforms for the study of membrane proteins and function. Assembly of functional SLBs in an array format would lead to a breakthrough in high-throughput screening of membrane-associated processes, e.g., drugs binding to transmembrane proteins. We report the formation of SLBs from the rupture of anionic vesicles in the presence of Ca(2+) ions on ITO-coated surfaces and characterise the assembly and SLB properties. Furthermore, the formation, manipulation and regeneration of SLBs adsorbed on ITO microelectrode array spots using an electric potential switch are demonstrated. This platform enables addressable assembly and the study of electrochemically mediated membrane processes in a microarray format which can be regenerated in situ.
支撑脂质双层(SLBs)是研究膜蛋白及其功能的理想平台。以阵列形式组装功能性SLBs将在膜相关过程的高通量筛选方面取得突破,例如药物与跨膜蛋白的结合。我们报道了在ITO涂层表面存在Ca(2+)离子的情况下,阴离子囊泡破裂形成SLBs,并对其组装和SLB特性进行了表征。此外,还展示了利用电势开关在ITO微电极阵列点上吸附的SLBs的形成、操控和再生。该平台能够以可原位再生的微阵列形式进行可寻址组装和电化学介导的膜过程研究。