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首页> 外文期刊>Bulletin of Materials Science >Microrheology of concentrated DNA solutions using optical tweezers
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Microrheology of concentrated DNA solutions using optical tweezers

机译:使用光学镊子浓缩DNA溶液的微流变学

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Semiflexible biopolymers play a vital role in shaping cellular structure and rigidity. In this work, we report the determination of microrheological properties of concentrated, double-stranded calf thymus DNA (CT-DNA) solutions using passive, laser-scattering based particle-tracking methodology. From power spectral analysis, we obtain dynamic shear moduli of the polymer solutions stretching over three decades of frequency (10~0-10~3 Hz) and over concentration ranges spanning from very dilute to concentrated regime. We also study the effects of altered ionic strength and denaturation on the shear modulus. Our results indicate that (CT-DNA) exhibits predominantly elastic behaviour in the concentration range we probed. From the measurements of the plateau shear modulus, G_p, we conclude that DNA generally behaves like a semiflexible polymer in a good solvent even at low ionic strength. We have thus demonstrated application of passive microrheological method using optical tweezers to DNA solutions. Further extensions of the technique and its applications are discussed.
机译:半柔性生物聚合物在塑造细胞结构和刚性方面起着至关重要的作用。在这项工作中,我们报告了使用被动的,基于激光散射的粒子跟踪方法测定浓缩的双链小牛胸腺DNA(CT-DNA)溶液的微流变特性。从功率谱分析中,我们获得了聚合物溶液的动态剪切模量,该聚合物溶液的拉伸范围超过了几十年的频率(10〜0-10〜3 Hz),并且浓度范围从非常稀的到浓缩的范围。我们还研究了改变的离子强度和变性对剪切模量的影响。我们的结果表明(CT-DNA)在我们探测的浓度范围内主要表现出弹性行为。从平台剪切模量G_p的测量中,我们得出结论,即使在低离子强度下,DNA在良好溶剂中的表现也通常像半柔性聚合物。因此,我们已经证明了使用光镊将被动微流变方法应用于DNA溶液。讨论了该技术及其应用的进一步扩展。

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