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Characterization of hyaluronic acid by dynamic light scattering and rheological techniques

机译:动态光散射和流变技术表征透明质酸

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Hyaluronic acid (HA) solutions represent an important class of biomedical products, mostly used in viscosupplementation of joints and as fillers. In the present work the hydrodynamic and rheological properties of hyaluronic acid, of differing M_W(90-4000 kDa), in physiological saline were investigated. Firstly, the effective conformation taken by the polymer chains was studied using dynamic light scattering. It was observed that they behaved like random coils which dimension is higher increasing the molecular weight of the material. Secondly, combining a novel microrheological technique, based on the dynamic light scattering of tracer particles, with conventional rheometry, it was possible to study in which way the molecular weight and the concentration of the polymer influence the storage modulus (G'), loss modulus (G") and complex viscosity (η~*) of its solutions, over an extended frequency range (typically 0.01-10000 Hz). This extended characterization allowed determination of the mesh size ξ of the physical network, created by the entangled polymer chains. Calculated mesh sizes in the range 200-700 nm were observed, demonstrating the possibility to use these systems as injectable carriers of biomolecules with an appropriate dimension.
机译:透明质酸(HA)溶液代表了一类重要的生物医药产品,主要用于关节的粘液和填料。在本作研究中,研究了透明质酸的流体动力学和流变性质,不同的M_W(90-4000kDa),生理盐水中的生理盐水。首先,使用动态光散射研究了聚合物链采取的有效构象。观察到它们表现得像随机线圈,哪个尺寸较高,增加了材料的分子量。其次,基于示踪剂颗粒的动态光散射结合一种新的微流学技术,具有常规流变学,可以研究分子量和聚合物的浓度影响储存模量(G'),损耗模量(g“)和其解决方案的复合粘度(η〜*),在扩展频率范围内(通常为0.01-10000Hz)。该扩展表征允许确定物理网络的网格尺寸ξ,由缠绕的聚合物链产生。观察到200-700nm范围内的计算网格尺寸,证明了使用这些系统作为具有适当尺寸的生物分子的可注射载体的可能性。

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