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Tough Double Network Hydrogel and Its Biomedical Applications
Annual Review of Chemical and Biomolecular Engineering ( IF 7.6 ) Pub Date : 2021-06-07 , DOI: 10.1146/annurev-chembioeng-101220-080338
Takayuki Nonoyama 1 , Jian Ping Gong 1, 2
Affiliation  

Soft and wet hydrogels have many similarities to biological tissues, though their mechanical fragility had been one of the biggest obstacles in biomedical applications. Studies and developments in double network (DN) hydrogels have elucidated how to create tough gels universally based on sacrificial bond principles and opened a path for biomedical application of hydrogels in regenerative medicine and artificial soft connective tissues, such as cartilage, tendon, and ligament, which endure high tension and compression. This review explores a universal toughening mechanism for and biomedical studies of DN hydrogels. Moreover, because the term sacrificial bonds has been mentioned often in studies of bone tissues, consisting of biomacromolecules and biominerals, recent studies of gel–biomineral composites to understand early-stage osteogenesis and to simulate bony sacrificial bonds are also summarized.

中文翻译:


坚韧双网络水凝胶及其生物医学应用

软湿水凝胶与生物组织有许多相似之处,尽管它们的机械脆弱性一直是生物医学应用中的最大障碍之一。双网络(DN)水凝胶的研究和发展阐明了如何基于牺牲键原理普遍地制造出坚韧的凝胶,并为水凝胶在再生医学和人造软结缔组织(如软骨、肌腱和韧带)中的生物医学应用开辟了道路。承受高张力和压缩。本综述探讨了 DN 水凝胶的通用增韧机制和生物医学研究。此外,因为在骨组织的研究中经常提到牺牲键这个术语,包括生物大分子和生物矿物质,

更新日期:2021-06-08
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