School of Chemistry & Chemical Engineering, Yantai University, Yantai 264005, China.
Shandong Laboratory of Yantai Advanced Materials and Green Manufacturing, Yantai 265503, China.
Int J Mol Sci. 2024 Aug 22;25(16):9100. doi: 10.3390/ijms25169100.
The impressive adhesive capacity of marine mussels has inspired various fascinating designs in biomedical fields. Mussel-inspired injectable adhesive hydrogels, as a type of promising mussel-inspired material, have attracted much attention due to their minimally invasive property and desirable functions provided by mussel-inspired components. In recent decades, various mussel-inspired injectable adhesive hydrogels have been designed and widely applied in numerous biomedical fields. The rational incorporation of mussel-inspired catechol groups endows the injectable hydrogels with the potential to exhibit many properties, including tissue adhesiveness and self-healing, antimicrobial, and antioxidant capabilities, broadening the applications of injectable hydrogels in biomedical fields. In this review, we first give a brief introduction to the adhesion mechanism of mussels and the characteristics of injectable hydrogels. Further, the typical design strategies of mussel-inspired injectable adhesive hydrogels are summarized. The methodologies for integrating catechol groups into polymers and the crosslinking methods of mussel-inspired hydrogels are discussed in this section. In addition, we systematically overview recent mussel-inspired injectable adhesive hydrogels for biomedical applications, with a focus on how the unique properties of these hydrogels benefit their applications in these fields. The challenges and perspectives of mussel-inspired injectable hydrogels are discussed in the last section. This review may provide new inspiration for the design of novel bioinspired injectable hydrogels and facilitate their application in various biomedical fields.
海洋贻贝令人印象深刻的粘附能力激发了生物医学领域各种引人入胜的设计。贻贝启发型可注射胶粘剂水凝胶作为一种有前途的贻贝启发型材料,由于其微创特性和贻贝启发型成分提供的理想功能而受到广泛关注。近几十年来,各种贻贝启发型可注射胶粘剂水凝胶已被设计并广泛应用于许多生物医学领域。合理地掺入贻贝启发型儿茶酚基团使可注射水凝胶具有表现出多种特性的潜力,包括组织粘附性和自修复、抗菌和抗氧化能力,从而拓宽了可注射水凝胶在生物医学领域的应用。在这篇综述中,我们首先简要介绍了贻贝的粘附机制和可注射水凝胶的特性。进一步总结了贻贝启发型可注射胶粘剂水凝胶的典型设计策略。在这一部分讨论了将儿茶酚基团整合到聚合物中的方法和贻贝启发型水凝胶的交联方法。此外,我们系统地综述了最近用于生物医学应用的贻贝启发型可注射胶粘剂水凝胶,重点讨论了这些水凝胶的独特性能如何使它们受益于在这些领域的应用。在最后一节讨论了贻贝启发型可注射水凝胶的挑战和展望。这篇综述可能为设计新型仿生可注射水凝胶提供新的灵感,并促进它们在各种生物医学领域的应用。