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A Rapid Microfluidic Mixer for High-Viscosity Fluids To Track Ultrafast Early Folding Kinetics of G-Quadruplex under Molecular Crowding Conditions

机译:快速高流动性流体微混合器,可在分子拥挤情况下跟踪G-四链体的超快早期折叠动力学。

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Tracking the folding kinetics of macromolecules under molecular crowding conditions represents a tremendous challenge due to the high viscosity of the solution. In this paper, we report a unique T-type microfluidic mixer with seven consecutive ω-shaped baffles for fast mixing of high-viscosity fluids. Numerical simulations and experimental characterizations proved that the micromixer could achieve a mixing time of 579.4 μs for solutions with viscosities about 33.6 times that of pure water. Over a 1000-fold improvement in mixing dead time was accomplished in comparison to those reported previously. We further used this highly efficient micromixer to track the early folding kinetics of human telomere G-quadruplex under molecular crowding conditions. Results indicated an exponential process in the initial folding phase of G-quadruplex, and the G-quadruplex formed a more compact structure under higher degrees of molecular crowding conditions.
机译:由于溶液的高粘度,在分子拥挤条件下追踪大分子的折叠动力学代表着巨大的挑战。在本文中,我们报告了一种独特的T型微流体混合器,该混合器具有七个连续的ω形挡板,用于快速混合高粘度流体。数值模拟和实验表征证明,对于粘度约为纯水33.6倍的溶液,该微混合器可以达到579.4μs的混合时间。与以前报道的相比,混合停滞时间提高了1000倍以上。我们进一步使用了这种高效的微混合器,以追踪在分子拥挤条件下人类端粒G-四链体的早期折叠动力学。结果表明,G-四链体在初始折叠阶段呈指数过程,在更高程度的分子拥挤条件下,G-四链体形成了更紧密的结构。

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