Zhuikova Yuliya, Zhuikov Vsevolod, Varlamov Valery
Research Center of Biotechnology of the Russian Academy of Sciences 33, Bld. 2 Leninsky Ave, Moscow 119071, Russia.
Polymers (Basel). 2022 Dec 18;14(24):5549. doi: 10.3390/polym14245549.
One of the important directions in the development of modern medical devices is the search and creation of new materials, both synthetic and natural, which can be more effective in their properties than previously used materials. Traditional materials such as metals, ceramics, and synthetic polymers used in medicine have certain drawbacks, such as insufficient biocompatibility and the emergence of an immune response from the body. Natural biopolymers have found applications in various fields of biology and medicine because they demonstrate a wide range of biological activity, biodegradability, and accessibility. This review first described the properties of the two most promising biopolymers belonging to the classes of polyhydroxyalkanoates and polysaccharides-polyhydroxybutyrate and chitosan. However, homopolymers also have some disadvantages, overcome which becomes possible by creating polymer composites. The article presents the existing methods of creating a composite of two polymers: copolymerization, electrospinning, and different ways of mixing, with a description of the properties of the resulting compositions. The development of polymer composites is a promising field of material sciences, which allows, based on the combination of existing substances, to develop of materials with significantly improved properties or to modify of the properties of each of their constituent components.
现代医疗设备发展的重要方向之一是寻找和创造新型材料,包括合成材料和天然材料,这些材料在性能上要比以前使用的材料更有效。医学中使用的传统材料,如金属、陶瓷和合成聚合物,存在一定的缺点,如生物相容性不足以及人体出现免疫反应。天然生物聚合物因其具有广泛的生物活性、生物降解性和可得性,已在生物学和医学的各个领域得到应用。本综述首先描述了属于聚羟基脂肪酸酯和多糖类的两种最具前景的生物聚合物——聚羟基丁酸酯和壳聚糖的特性。然而,均聚物也有一些缺点,通过创建聚合物复合材料有可能克服这些缺点。本文介绍了制备两种聚合物复合材料的现有方法:共聚、静电纺丝和不同的混合方式,并描述了所得组合物的性能。聚合物复合材料的开发是材料科学中一个很有前景的领域,它能够基于现有物质的组合,开发出性能显著改善的材料,或改变其每个组成成分的性能。