Mayama H, Nakai T, Takushi E, Tsujii K, Yoshikawa K
Nanotechnology Research Center, Research Institute for Electronic Science, Hokkaido University, Sapporo 001-0021, Japan.
J Chem Phys. 2007 Jul 21;127(3):034901. doi: 10.1063/1.2748767.
Volume phase transitions of a DNA gel and a single giant DNA chain caused by spermidine(3+) (SPD(3+)) were investigated. The change in volume for the single DNA (VV(0) approximately 10(-5)) was four orders of magnitude greater than that for the DNA gel ( approximately 10(-1)), while the critical SPD(3+) concentration for the gel (1.8 mM) was one order of magnitude greater than that of the single DNA (0.12-0.25 mM) at the same pH 6.86. We tried to describe mean-field theories with virial expansion, which is valid for the coil-globule transition of a single polymer chain, for the volume phase transitions to explain the reason why such marked differences appeared. Considering the degree of the ordering of Kuhn segments arising from the gel network structure together with the chain length of cross-linked polymer chains, the volume phase transitions were described and then the significant differences were reproduced quantitatively. We concluded that the network structure plays a significant role in the volume phase transition of the gel.
研究了由亚精胺(3+)(SPD(3+))引起的DNA凝胶和单个巨型DNA链的体积相变。单个DNA的体积变化(VV(0)约为10^(-5))比DNA凝胶的体积变化(约为10^(-1))大四个数量级,而在相同pH值6.86下,凝胶的临界SPD(3+)浓度(1.8 mM)比单个DNA的临界浓度(0.12 - 0.25 mM)大一个数量级。我们尝试用维里展开来描述平均场理论,该理论对单个聚合物链的线团-球粒转变有效,用于解释体积相变中出现如此显著差异的原因。考虑到由凝胶网络结构产生的库恩链段的有序程度以及交联聚合物链的链长,描述了体积相变,然后定量地再现了显著差异。我们得出结论,网络结构在凝胶的体积相变中起重要作用。