Rahman Mijanur, Ali Aliaa, Sjöholm Erica, Soindinsalo Sebastian, Wilén Carl-Eric, Bansal Kuldeep Kumar, Rosenholm Jessica M
Pharmaceutical Sciences Laboratory, Faculty of Science and Engineering, Åbo Akademi University, BioCity, Tykistökatu 6A, 20520 Turku, Finland.
Laboratory of Molecular Science and Engineering, Åbo Akademi University, Aurum, Henrikinkatu 2, 20500 Turku, Finland.
Pharmaceutics. 2022 Apr 6;14(4):798. doi: 10.3390/pharmaceutics14040798.
In recent years, polymer-based advanced drug delivery and tissue engineering have grown and expanded steadily. At present, most of the polymeric research has focused on improving existing polymers or developing new biomaterials with tunable properties. Polymers with free functional groups offer the diverse characteristics needed for optimal tissue regeneration and controlled drug delivery. Allyl-terminated polymers, characterized by the presence of a double bond, are a unique class of polymers. These polymers allow the insertion of a broad diversity of architectures and functionalities via different chemical reactions. In this review article, we shed light on various synthesis methodologies utilized for generating allyl-terminated polymers, macromonomers, and polymer precursors, as well as their post-synthesis modifications. In addition, the biomedical applications of these polymers reported in the literature, such as targeted and controlled drug delivery, improvement i aqueous solubility and stability of drugs, tissue engineering, and antimicrobial coatings, are summarized.
近年来,基于聚合物的先进药物递送和组织工程领域稳步发展并不断拓展。目前,大多数聚合物研究集中于改进现有聚合物或开发具有可调控性能的新型生物材料。带有游离官能团的聚合物具备实现最佳组织再生和可控药物递送所需的多样特性。以双键存在为特征的烯丙基封端聚合物是一类独特的聚合物。这些聚合物能够通过不同化学反应引入多种多样的结构和功能。在这篇综述文章中,我们阐述了用于制备烯丙基封端聚合物、大分子单体和聚合物前体的各种合成方法,以及它们的合成后修饰。此外,还总结了文献中报道的这些聚合物在生物医学方面的应用,如靶向和可控药物递送、改善药物的水溶性和稳定性、组织工程以及抗菌涂层等。