Department of Physics and Materials Engineering, Tomas Bata University in Zlín, Vavrečkova 275, 760 01, Zlín, Czech Republic; Centre of Polymer Systems, Tomas Bata University in Zlín, Třída Tomáš Bati 5678, 760 01, Zlín, Czech Republic.
Department of Biomaterials, Faculty of Engineering Science, Universität Bayreuth, Prof.-Rüdiger-Bormann. Str. 1, 95447, Bayreuth, Germany.
Carbohydr Polym. 2021 Feb 15;254:117307. doi: 10.1016/j.carbpol.2020.117307. Epub 2020 Oct 24.
The conditions determining network-forming and aggregation properties of hyaluronan on the mica surface were studied. The hyaluronan was deposited on the surface from aqueous and saline solutions and attached by a bivalent cation. The morphology of the immobilized assemblies was characterized by atomic force microscopy. The experimental results show that the morphology and size of the aggregates as well as the density of the interconnecting fibrillar network, both made of hyaluronan, at the liquid-solid phase interface are determined not only by its molecular weight or concentration in solution, but also by the dissolution conditions and storage time. These findings extend the current state of knowledge about the conformational variability of this biologically important polymer. Understanding the conformational variability is of great importance, as it governs the physiological functions of hyaluronan, as well as its processability and formulations. That in turn determines its usability in different pharmacological and biomaterial applications.
研究了透明质酸在云母表面形成网络和聚集特性的条件。透明质酸从水溶液和盐溶液中沉积在表面上,并通过二价阳离子附着。通过原子力显微镜对固定化组装体的形态进行了表征。实验结果表明,不仅取决于其分子量或溶液中的浓度,还取决于溶解条件和储存时间,在固液界面处形成的聚集体的形态和大小以及由透明质酸组成的互联纤维状网络的密度。这些发现扩展了对这种具有重要生物学意义的聚合物构象可变性的现有认识。了解构象可变性非常重要,因为它控制着透明质酸的生理功能,以及其加工性和配方。这反过来又决定了它在不同的药理学和生物材料应用中的可用性。