Händler Tina, Tutmarc Cary, Freitag Jessica S, Smith David M, Schnauß Jörg
Peter Debye Institute for Soft Matter Physics, University of Leipzig, Linnéstraße 5, 04103 Leipzig, Germany.
Fraunhofer Institute for Cell Therapy and Immunology, Perlickstraße 1, 04103 Leipzig, Germany.
Polymers (Basel). 2022 Feb 12;14(4):707. doi: 10.3390/polym14040707.
Entangled semiflexible polymer networks are usually described by the tube model, although this concept has not been able to explain all experimental observations. One of its major shortcomings is neglecting the thermal fluctuations of the polymers surrounding the examined test filament, such that disentanglement effects are not captured. In this study, we present experimental evidence that correlated constraint release which has been predicted theoretically occurs in entangled, but not in crosslinked semiflexible polymer networks. By tracking single semiflexible DNA nanotubes embedded both in entangled and crosslinked F-actin networks, we observed different reptation dynamics in both systems, emphasizing the need for a revision of the classical tube theory for entangled polymer solutions.
纠缠的半柔性聚合物网络通常用管模型来描述,尽管这一概念无法解释所有的实验观察结果。其主要缺点之一是忽略了围绕被检测测试细丝的聚合物的热涨落,因此没有捕捉到解缠结效应。在本研究中,我们提供了实验证据,证明理论上预测的相关约束释放发生在纠缠的半柔性聚合物网络中,而不是交联的半柔性聚合物网络中。通过追踪嵌入纠缠和交联F-肌动蛋白网络中的单个半柔性DNA纳米管,我们在两个系统中观察到了不同的蛇行动力学,强调了对纠缠聚合物溶液的经典管理论进行修正的必要性。