自愈水凝胶
两性离子
聚合物
体内
化学
表面改性
肿胀 的
组织工程
酰肼
再生(生物学)
生物物理学
材料科学
化学工程
高分子化学
生物医学工程
有机化学
分子
细胞生物学
工程类
生物
医学
生物技术
物理化学
复合材料
作者
Zhicheng Pan,Jonathan Dorogin,Andrew Lofts,Gurpreet Randhawa,Fei Xu,Rebecca A. Slick,Mosana Abraha,C. Tran,Michael W. Lawlor,Todd Hoare
标识
DOI:10.1002/adhm.202304397
摘要
A zwitterionic injectable and degradable hydrogel based on hydrazide and aldehyde-functionalized [2-(methacryloyloxy)ethyl] dimethyl-(3-sulfopropyl)ammonium hydroxide (DMAPS) precursor polymers that can address practical in vivo needs is reported. Zwitterion fusion interactions between the zwitterionic precursor polymers create a secondary physically crosslinked network to enable much more rapid gelation than previously reported with other synthetic polymers, facilitating rapid gelation at much lower polymer concentrations or degrees of functionalization than previously accessible in addition to promoting zero swelling and long-term degradation responses and significantly stiffer mechanics than are typically accessed with previously reported low-viscosity precursor gelation systems. The hydrogels maintain the highly anti-fouling properties of conventional zwitterionic hydrogels against proteins, mammalian cells, and bacteria while also promoting anti-fibrotic tissue responses in vivo. Furthermore, the use of the hydrogels for effective delivery and subsequent controlled release of viable cells with tunable profiles both in vitro and in vivo is demonstrated, including the delivery of myoblasts in a mouse skeletal muscle defect model for reducing the time between injury and functional mobility recovery. The combination of the injectability, degradability, and tissue compatibility achieved offers the potential to expand the utility of zwitterionic hydrogels in minimally invasive therapeutic applications.
科研通智能强力驱动
Strongly Powered by AbleSci AI