Research Center for Analytical Instrumentation, Institute of Cyber-Systems and Control, State Key Laboratory of Industrial Control Technology, Zhejiang University, Hangzhou, People's Republic of China.
Anal Chem. 2011 May 1;83(9):3336-42. doi: 10.1021/ac103129e. Epub 2011 Apr 1.
A microdevice made of glass for genetic analysis has been fabricated, for the first time, for integration of extraction of nucleic acids and loop-mediated isothermal amplification (LAMP), followed by online fluorescence detection of amplification products on a single chip. The nucleic acid (NA) extraction region consists of a microfabricated serpentine channel in which micropillars were etched to increase the channel surface area and the capture efficiency of NAs. Nucleic acid molecules were bound to these pillars and channel surface in the presence of the chaotropic salt guanidine hydrochloride and eluted into a downstream amplification chamber with low ionic strength buffer where loop-mediated isothermal amplification was efficiently performed. Amplification can be detected online by the increase of fluorescence intensity at 540 nm when a low concentration of SYBR Green I, a fluorescent dsDNA intercalating dye, is employed. Flow control was accomplished by using laminar flow and differential channel flow resistances. Through passivation of the LAMP chamber and the channel between the extraction region and amplification domain, effective nucleic acid extraction and amplification were performed by just using a double-channel syringe pump and a heating block. By using this integrated microdevice, the purification of nucleic acids from complex biological matrixes and their subsequent amplification and detection online could be finished within 2 h.
首次制作出一种由玻璃制成的微器件,用于将核酸提取和环介导等温扩增(LAMP)集成,然后在单个芯片上对扩增产物进行在线荧光检测。核酸(NA)提取区域由微加工的蛇形通道组成,其中蚀刻了微柱以增加通道表面积和 NA 的捕获效率。在存在高离液盐盐酸胍的情况下,核酸分子与这些柱子和通道表面结合,并在低离子强度缓冲液中洗脱到下游扩增室中,在该室中可以有效地进行环介导等温扩增。当使用低浓度的 SYBR Green I(一种荧光双链 DNA 嵌入染料)时,可以通过 540nm 处荧光强度的增加来在线检测扩增。通过使用层流和差分通道流动阻力来实现流量控制。通过对 LAMP 室和提取区域与扩增域之间的通道进行钝化,仅使用双通道注射器泵和加热块即可实现有效的核酸提取和扩增。通过使用这种集成的微器件,可以在 2 小时内完成从复杂生物基质中纯化核酸及其随后的在线扩增和检测。