The Graduate School, University of Santo Tomas, España Boulevard, Manila 1008, Philippines; Department of Chemistry, College of Science, España Boulevard, Manila 1008, Philippines.
Department of Bioscience Technology, Chung Yuan Christian University, Chung Li 32023, Taiwan, ROC.
Int J Biol Macromol. 2020 Nov 1;162:723-736. doi: 10.1016/j.ijbiomac.2020.06.129. Epub 2020 Jun 15.
Remarkable properties of hydrogels are compromised by failure to recover from damage, bringing their intended functions to an end. To address this, hydrogels can be functionalized with self-healing property to enable them to restore themselves after damage, thus, extending their lifetime. Herein, hydrogels were prepared by cross-linking acrylamide-modified β-chitin (Am-β-Chn) with alginate dialdehyde (ADA) to form Schiff base, showing IR characteristic peak at 1650 cm, attributed to the stretching vibration of CN. The dynamic Schiff base and H-bond rendered the double crosslinked hydrogels self-healing as demonstrated by continuous step strain rheology. Characterization of the hydrogels revealed excellent biocompatibility, biodegradability, injectability and self-healing properties. Furthermore, the wound healing property of the hydrogels was investigated in vivo using zebrafish as a model system. Indirect application of Am-β-Chn/ADA hydrogel remarkably led to ~87% wound healing as compared to control which gave ~50%, suggesting that hydrogels are effective in accelerating wound healing. However, a clear understanding of the exact mechanism of its wound healing property remains to be investigated. To the best of our knowledge, this is the first innovation of developing novel double crosslinked Am-β-Chn/ADA hydrogels with both self-healing and accelerated wound healing properties, directly from marine-food wastes.
水凝胶的显著性能因无法从损伤中恢复而受到损害,从而使其预期功能结束。为了解决这个问题,可以对水凝胶进行功能化处理,使其具有自修复性能,以便在受到损伤后能够自我修复,从而延长其使用寿命。在此,通过将丙烯酰胺修饰的β-壳聚糖(Am-β-Chn)与海藻酸钠二醛(ADA)交联来制备水凝胶,在 1650 cm 处显示出 IR 特征峰,归因于 CN 的伸缩振动。动态席夫碱和氢键使双交联水凝胶具有自修复性,如连续阶跃流变学所示。水凝胶的表征显示出优异的生物相容性、可生物降解性、可注射性和自修复性。此外,还通过斑马鱼作为模型系统在体内研究了水凝胶的伤口愈合性能。与对照组(约 50%)相比,Am-β-Chn/ADA 水凝胶的间接应用可显著导致约 87%的伤口愈合,表明水凝胶可有效加速伤口愈合。然而,其确切的伤口愈合性能的机制仍有待进一步研究。据我们所知,这是首次从海洋食品废物中开发出具有自修复和加速伤口愈合性能的新型双交联 Am-β-Chn/ADA 水凝胶。