Dalian Institute of Chemical Physics, Chinese Academy of Sciences, Dalian, 116023, China.
Lab Chip. 2010 Nov 7;10(21):2925-31. doi: 10.1039/c005227b. Epub 2010 Sep 9.
We present a novel microfluidic device integrated with microvalves and micropumps for rapid DNA hybridization using shuttle flow. The device is composed of 48 hybridization units containing 48 microvalves and 96 micropumps for the automation of shuttle flow. We used four serotypes of Dengue Virus genes (18mer) to demonstrate that the automatic shuttle flow shortened the hybridization time to 90 s, reduced sample consumption to 1 μL and lowered detection limit to 100 pM (100 amol in a 1 μL sample). Moreover, we applied this device to realize single base discrimination and analyze 48 samples containing different DNA targets, simultaneously. For kinetic measurements of nucleotide hybridization, on-line monitoring of the processes was carried out. This rapid hybridization device has the ability for accommodating the entire hybridization process (i.e., injection, hybridization, washing, detection, signal acquisition) in an automated and high-throughput fashion.
我们提出了一种新颖的微流控装置,该装置集成了微阀和微泵,可通过梭流实现快速 DNA 杂交。该装置由 48 个杂交单元组成,每个单元包含 48 个微阀和 96 个微泵,可实现梭流的自动化。我们使用了四种登革热病毒基因(18mer)来证明自动梭流将杂交时间缩短到 90 秒,将样品消耗降低至 1 μL,并将检测限降低至 100 pM(1 μL 样品中的 100 飞摩尔)。此外,我们应用该装置实现了单碱基分辨,并同时分析了包含不同 DNA 靶标的 48 个样本。对于核苷酸杂交的动力学测量,在线监测了这些过程。这种快速杂交装置能够以自动化和高通量的方式容纳整个杂交过程(即注入、杂交、洗涤、检测、信号采集)。