Yamashita Kenichi, Miyazaki Masaya, Yamaguchi Yoshiko, Nakamura Hiroyuki, Maeda Hideaki
Micro-& Nano-space Chemistry Group, Nanotechnology Research Institute, National Institute of Advanced Industrial Science and Technology, 807-1, Shuku-machi, Tosu, Saga 841-0052, Japan.
J Phys Chem B. 2007 Jun 7;111(22):6127-33. doi: 10.1021/jp0686745. Epub 2007 May 15.
This paper reports the shift in thermal stability of DNA duplex and its thermodynamics spectroscopically, caused by stretching and orientation of DNA strands in a microchannel laminar flow. For direct spectroscopic measurement of the microchannel, we prepared an in-house temperature-controllable microchannel-type flow cell. The melting curves of DNA oligomers in a microchannel laminar flow were measured. For DNA oligomers with more than 10 base pairs, the melting curve shifted to the high-temperature side with higher flow speed. However, for 8-base-pair DNA oligomers, a change in the melting profile was not observed in batchwise and microchannel flows. We undertook microfluidic thermodynamic analysis to elucidate details of the shift in thermal stability of the DNA duplex in a microchannel laminar flow. Enthalpy-entropy compensation is applicable to the microfluidic thermal stability shift. We studied the relationships between the enthalpy-entropy compensation and DNA strand length or flow speed. Results showed that the enthalpy-entropy compensation was influenced by both DNA strand length and flow speed, and the penalties of enthalpy were 2-12% greater than the benefits of entropy.
本文通过光谱法报道了微通道层流中DNA链的拉伸和取向导致的DNA双链体热稳定性变化及其热力学性质。为了对微通道进行直接光谱测量,我们制备了一个内部温度可控的微通道型流动池。测量了微通道层流中DNA寡聚物的熔解曲线。对于具有10个以上碱基对的DNA寡聚物,熔解曲线随着流速的增加向高温侧移动。然而,对于8碱基对的DNA寡聚物,在分批和微通道流动中均未观察到熔解曲线的变化。我们进行了微流体热力学分析,以阐明微通道层流中DNA双链体热稳定性变化的细节。焓-熵补偿适用于微流体热稳定性变化。我们研究了焓-熵补偿与DNA链长度或流速之间的关系。结果表明,焓-熵补偿受DNA链长度和流速的影响,焓的惩罚比熵的益处大2%-12%。