Faculty of Chemistry, Materials and Bioengineering, Kansai University, 3-3-35 Yamate-cho, Suita-shi, Osaka 564-0836, Japan.
Molecules. 2020 Feb 10;25(3):758. doi: 10.3390/molecules25030758.
Biomimetic molecular design is a promising approach for generating functional biomaterials such as cell membrane mimetic blood-compatible surfaces, mussel-inspired bioadhesives, and calcium phosphate cements for bone regeneration. Polyphosphoesters (PPEs) are candidate biomimetic polymer biomaterials that are of interest due to their biocompatibility, biodegradability, and structural similarity to nucleic acids. While studies on the synthesis of PPEs began in the 1970s, the scope of their use as biomaterials has increased in the last 20 years. One advantageous property of PPEs is their molecular diversity due to the presence of multivalent phosphorus in their backbones, which allows their physicochemical and biointerfacial properties to be easily controlled to produce the desired molecular platforms for functional biomaterials. Polyphosphodiesters (PPDEs) are analogs of PPEs that have recently attracted interest due to their strong affinity for biominerals. This review describes the fundamental properties of PPDEs and recent research in the field of macromolecular bone therapeutics.
仿生分子设计是一种很有前途的方法,可以用来生成功能性生物材料,如细胞膜模拟的血液相容性表面、贻贝类生物粘合剂以及用于骨再生的磷酸钙水泥。聚磷酸酯(PPEs)是一种候选的仿生聚合物生物材料,由于其生物相容性、可生物降解性和与核酸的结构相似性而受到关注。虽然 PPEs 的合成研究始于 20 世纪 70 年代,但在过去 20 年中,它们作为生物材料的用途范围有所扩大。PPEs 的一个有利特性是其分子多样性,由于其主链中存在多价磷,这使得它们的物理化学和生物界面性质可以很容易地控制,从而产生用于功能性生物材料的所需分子平台。聚磷酸二酯(PPDEs)是 PPEs 的类似物,由于它们对生物矿物质的强烈亲和力,最近引起了人们的兴趣。本综述描述了 PPDEs 的基本性质和大分子骨治疗领域的最新研究进展。