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Dynamics of DNA molecules in a cross-slot microchannel

机译:跨槽微通道中DNA分子的动力学

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摘要

The conformation and dynamics of double-stranded DNA molecules incross-slots with equal arm length are examined with the use of fluorescent labeled lambda-DNA at 1.2 <= De <= 4.1. The stretching and diffusing of individual DNA molecules in the flow was visualized/recorded with confocal laser scanning microscopy (CLSM). The onset of coil-stretch transition of DNA molecules in the elongational flow was determined at the microscale. Time-dependent velocity distribution with a mean velocity of 50 (mu)m s~(-1) for DNA molecules was observed by using FluoSpheres, carboylate-modified microspheres over a time period of 1.12 s. The effect of channel geometry (corner and outlet regions) and the solution viscosity (1.9 cP and 9.5 cP) on the conformation and diffusion are also studied and discussed. We report the maximum and the distribution of the fractional extension of DNA molecules, and show that the maximum fractional extension may be up to 0.64 at De velence 4.1, and at a strain of 1.8 there is a corresponding stretching force of about 200 pN.
机译:使用荧光标记的lambda-DNA在1.2 <= De <= 4.1的条件下检查具有相等臂长的交叉槽中双链DNA分子的构象和动力学。使用共聚焦激光扫描显微镜(CLSM)可视化/记录流中单个DNA分子的拉伸和扩散。在微观尺度上确定了DNA分子在伸长流中的盘绕-拉伸转变的开始。使用FluoSpheres(经甲酸酯修饰的微球)在1.12 s的时间内观察到了随时间变化的速度分布,DNA分子的平均速度为50μms〜(-1)。还研究和讨论了通道几何形状(角和出口区域)和溶液粘度(1.9 cP和9.5 cP)对构象和扩散的影响。我们报告了DNA分子的部分延伸的最大值和分布,并显示最大的部分延伸在Develence 4.1时可能高达0.64,并且在1.8的应变下有大约200 pN的相应拉伸力。

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