Li Wenzhao, Yang Xinyuan, Lai Puxiang, Shang Luoran
Zhongshan-Xuhui Hospital and the Shanghai Key Laboratory of Medical Epigenetics the International Co-laboratory of Medical Epigenetics and Metabolism (Ministry of Science and Technology) Institutes of Biomedical Sciences Fudan University Shanghai China.
Department of Biomedical Engineering The Hong Kong Polytechnic University Hong Kong China.
Smart Med. 2022 Dec 25;1(1):e20220024. doi: 10.1002/SMMD.20220024. eCollection 2022 Dec.
The adhesiveness of hydrogels is urgently required in various biomedical applications such as medical patches, tissue sealants, and flexible electronic devices. However, biological tissues are often wet, soft, movable, and easily damaged. These features pose difficulties for the construction of adhesive hydrogels for medical use. In nature, organisms adhere to unique strategies, such as reversible sucker adhesion in octopuses and nontoxic and firm catechol chemistry in mussels, which provide many inspirations for medical hydrogels to overcome the above challenges. In this review, we systematically classify bioadhesion strategies into structure-related and molecular-related ones, which cover almost all known bioadhesion paradigms. We outline the principles of these strategies and summarize the corresponding designs of medical adhesive hydrogels inspired by them. Finally, conclusions and perspectives concerning the development of this field are provided. For the booming bio-inspired adhesive hydrogels, this review aims to summarize and analyze the various existing theories and provide systematic guidance for future research from an innovative perspective.
水凝胶的粘附性在各种生物医学应用中,如医用贴片、组织密封剂和柔性电子设备中,都有着迫切的需求。然而,生物组织通常是湿润、柔软、可移动且容易受损的。这些特性给医用粘性水凝胶的构建带来了困难。在自然界中,生物体采用独特的粘附策略,如章鱼的可逆吸盘粘附以及贻贝的无毒且牢固的儿茶酚化学,这为医用凝胶克服上述挑战提供了诸多灵感。在本综述中,我们系统地将生物粘附策略分为与结构相关和与分子相关的策略,这些策略涵盖了几乎所有已知的生物粘附范例。我们概述了这些策略的原理,并总结了受其启发的医用粘性水凝胶的相应设计。最后,给出了关于该领域发展的结论和展望。对于蓬勃发展的仿生粘性水凝胶,本综述旨在总结和分析各种现有理论,并从创新的角度为未来研究提供系统指导。