Kosobokova Olga, Gavrilov Dmitri N, Khozikov Vyacheslav, Stepukhovich Andrey, Tsupryk Andriy, Pan'kov Sergey, Somova Olga, Abanshin Nikolai, Gudkov Georgiy, Tcherevishnik Marina, Gorfinkel Vera
Department of Electrical and Computer Engineering, State University of New York, Stony Brook, NY 11794-2350, USA.
Electrophoresis. 2007 Nov;28(21):3890-900. doi: 10.1002/elps.200700790.
We propose a novel method for electrokinetic injection of DNA samples into capillaries from nanoliter gel micropads, deposited on glass slides, which are coated with electroconducting film. Theoretical and experimental proof is presented for the proposed method. The method allows efficient and highly precise injection without physical contact between the gel pad and the capillary. Read length of more than 700 bp at Q20 has been reproducibly demonstrated in fused-silica capillaries using the proposed injection technique. Based on the obtained results we discuss a novel DNA sequencing system which combines DNA amplification and cycle sequencing in arrays of subnanoliter gel micropads and high-throughput electrophoretic separation in monolith multicapillary arrays.
我们提出了一种新颖的方法,可将DNA样品从沉积在涂有导电膜的载玻片上的纳升凝胶微垫电动注入毛细管中。文中给出了该方法的理论和实验证明。该方法能够实现高效且高精度的注入,同时凝胶垫与毛细管之间无需物理接触。使用所提出的注入技术,在熔融石英毛细管中已可重复地证明在Q20时读长超过700 bp。基于所获得的结果,我们讨论了一种新型DNA测序系统,该系统将DNA扩增和循环测序整合在亚纳升凝胶微垫阵列中,并在整体式多毛细管阵列中进行高通量电泳分离。