Department of Orthopedics, Zhongnan Hospital of Wuhan University, Donghu Road 169 430071, China.
Macromol Biosci. 2023 Jun;23(6):e2200481. doi: 10.1002/mabi.202200481. Epub 2023 Mar 10.
Bone grafting, as the current gold-standard for large scaled bone damage of various causes, has faced challenges from both the source and appliance. Emerging new tissue engineering substitutes are demonstrating more options and possibilities, with their improved biocompatibility, accessibility, and customizable function. Amongst them, injectable gels (IGs) are a class of gel material displaying astonishing non-invasive properties and surgical viability. While possessing responsiveness toward specific stimuli, they change their physical form in vivo, thus serving as wonderful biomaterials and drug delivery systems. In this review, the mechanics of stimuli-responsive IGs developed during the past decade are illustrated. Two branches of crosslinked gels - co-valent and non-covalent crosslinked IGs and their composition and customization are introduced. In conclusion, the present trend in bone tissue engineering research is summarized and made an outlook for future. It is hoped that this comprehensive review can provide a proper reference for the development of new IGs.
骨移植作为目前治疗各种原因导致的大骨损伤的金标准,在供体和移植物方面都面临着挑战。新兴的组织工程替代物具有更好的生物相容性、可及性和可定制功能,为人们提供了更多的选择和可能性。其中,可注射凝胶(IG)是一类具有惊人的非侵入性和手术可行性的凝胶材料。它们对特定刺激具有响应性,在体内改变其物理形态,因此是很好的生物材料和药物输送系统。在这篇综述中,展示了过去十年中开发的刺激响应性 IG 的力学特性。介绍了两种交联凝胶——共价和非共价交联 IG 及其组成和定制。最后,总结了骨组织工程研究的现状,并对未来进行了展望。希望这篇全面的综述能为新型 IG 的发展提供适当的参考。