Safakas Konstantinos, Saravanou Sofia-Falia, Iatridi Zacharoula, Tsitsilianis Constantinos
The Department of Chemical Engineering, University of Patras, 26500 Patras, Greece.
Gels. 2023 Mar 17;9(3):236. doi: 10.3390/gels9030236.
Polysaccharide-based graft copolymers bearing thermo-responsive grafting chains, exhibiting LCST, have been designed to afford thermo-responsive injectable hydrogels. The good performance of the hydrogel requires control of the critical gelation temperature, . In the present article, we wish to show an alternative method to tune using an alginate-based thermo-responsive gelator bearing two kinds of grafting chains (heterograft copolymer topology) of P(NIPAM--NtBAM) random copolymers and pure PNIPAM, differing in their lower critical solution temperature (LCST) about 10 °C. Interestingly, the of the heterograft copolymer is controlled from the overall hydrophobic content, NtBAM, of both grafts, implying the formation of blended side chains in the crosslinked nanodomains of the formed network. Rheological investigation of the hydrogel showed excellent responsiveness to temperature and shear. Thus, a combination of shear-thinning and thermo-thickening effects provides the hydrogel with injectability and self-healing properties, making it a good candidate for biomedical applications.
带有具有低临界溶液温度(LCST)的热响应接枝链的多糖基接枝共聚物已被设计用于提供热响应性可注射水凝胶。水凝胶的良好性能需要控制临界凝胶化温度。在本文中,我们希望展示一种使用基于藻酸盐的热响应凝胶剂来调节临界凝胶化温度的替代方法,该凝胶剂带有两种接枝链(异质接枝共聚物拓扑结构),即P(NIPAM-NtBAM)无规共聚物和纯PNIPAM,它们的低临界溶液温度(LCST)相差约10°C。有趣的是,异质接枝共聚物的临界凝胶化温度由两种接枝链的总疏水含量NtBAM控制,这意味着在形成的网络的交联纳米域中形成了混合侧链。水凝胶的流变学研究表明其对温度和剪切具有优异的响应性。因此,剪切变稀和热增稠效应的结合为水凝胶提供了可注射性和自愈性能,使其成为生物医学应用的良好候选材料。