Hou Changshun, Chang Yung-Fu, Yao Xi
Department of Biomedical Sciences, City University of Hong Kong, Hong Kong SAR 999077, China.
Department of Population Medicine and Diagnostic Sciences, College of Veterinary Medicine, Cornell University, Ithaca, NY 14850, USA.
Pharmaceutics. 2022 Aug 2;14(8):1616. doi: 10.3390/pharmaceutics14081616.
Traditional adhesives or glues such as cyanoacrylates, fibrin glue, polyethylene glycol, and their derivatives have been widely used in biomedical fields. However, they still suffer from numerous limitations, including the mechanical mismatch with biological tissues, weak adhesion on wet surfaces, biological incompatibility, and incapability of integrating desired multifunction. In addition to adaptive mechanical and adhesion properties, adhesive biomaterials should be able to integrate multiple functions such as stimuli-responsiveness, control-releasing of small or macromolecular therapeutic molecules, hosting of various cells, and programmable degradation to fulfill the requirements in the specific biological systems. Therefore, rational molecular engineering and structural designs are required to facilitate the development of functional adhesive materials. This review summarizes and analyzes the current supramolecular design strategies of representative adhesive materials, serving as a general guide for researchers seeking to develop novel adhesive materials for biomedical applications.
传统粘合剂或胶水,如氰基丙烯酸酯、纤维蛋白胶、聚乙二醇及其衍生物,已在生物医学领域广泛应用。然而,它们仍存在诸多局限性,包括与生物组织的力学不匹配、在潮湿表面的弱粘附性、生物不相容性以及无法整合所需的多种功能。除了具有适应性的力学和粘附性能外,粘附性生物材料还应能够整合多种功能,如刺激响应性、小分子或大分子治疗分子的控释、容纳各种细胞以及可编程降解,以满足特定生物系统的要求。因此,需要合理的分子工程和结构设计来促进功能性粘附材料的开发。本综述总结并分析了代表性粘附材料当前的超分子设计策略,为寻求开发用于生物医学应用的新型粘附材料的研究人员提供了一般指导。