Wendels Sophie, Avérous Luc
BioTeam/ICPEES-ECPM, UMR CNRS 7515, Université de Strasbourg, 25 Rue Becquerel, 67087, Strasbourg Cedex 2, France.
Bioact Mater. 2020 Oct 15;6(4):1083-1106. doi: 10.1016/j.bioactmat.2020.10.002. eCollection 2021 Apr.
Polyurethanes (PUs) are a major family of polymers displaying a wide spectrum of physico-chemical, mechanical and structural properties for a large range of fields. They have shown suitable for biomedical applications and are used in this domain since decades. The current variety of biomass available has extended the diversity of starting materials for the elaboration of new biobased macromolecular architectures, allowing the development of biobased PUs with advanced properties such as controlled biotic and abiotic degradation. In this frame, new tunable biomedical devices have been successfully designed. PU structures with precise tissue biomimicking can be obtained and are adequate for adhesion, proliferation and differentiation of many cell's types. Moreover, new smart shape-memory PUs with adjustable shape-recovery properties have demonstrated promising results for biomedical applications such as wound healing. The fossil-based starting materials substitution for biomedical implants is slowly improving, nonetheless better renewable contents need to be achieved for most PUs to obtain biobased certifications. After a presentation of some PU generalities and an understanding of a biomaterial structure-biocompatibility relationship, recent developments of biobased PUs for non-implantable devices as well as short- and long-term implants are described in detail in this review and compared to more conventional PU structures.
聚氨酯(PUs)是一类主要的聚合物,在众多领域展现出广泛的物理化学、机械和结构特性。它们已被证明适用于生物医学应用,并且几十年来一直在该领域使用。当前可用生物质的多样性扩展了用于制备新型生物基大分子结构的起始材料的种类,使得能够开发具有诸如可控生物和非生物降解等先进特性的生物基聚氨酯。在此框架下,新型可调谐生物医学装置已成功设计出来。具有精确组织仿生功能的聚氨酯结构能够被获得,并且适用于多种细胞类型的黏附、增殖和分化。此外,具有可调节形状恢复特性的新型智能形状记忆聚氨酯在诸如伤口愈合等生物医学应用中已展现出有前景的结果。用于生物医学植入物的基于化石的起始材料的替代正在缓慢改善,尽管如此,对于大多数聚氨酯而言,要获得生物基认证仍需要实现更高的可再生成分含量。在介绍了一些聚氨酯的概况并理解了生物材料结构 - 生物相容性关系之后,本综述详细描述了用于非植入式装置以及短期和长期植入物的生物基聚氨酯的最新进展,并与更传统的聚氨酯结构进行了比较。