Department of Biomedical Engineering, Boston University, Boston, MA, 02215-2407, USA.
Adv Mater. 2023 Jul;35(30):e2211774. doi: 10.1002/adma.202211774. Epub 2023 Jun 16.
Neural tissue damaged after central nervous system (CNS) injury does not naturally regenerate but is instead replaced by non-neural fibrotic scar tissue that serves no neurological function. Scar-free repair to create a more permissive environment for regeneration requires altering the natural injury responses of glial cells. In this work, glycopolymer-based supramolecular hydrogels are synthesized to direct adaptive glia repair after CNS injury. Combining poly(trehalose-co-guanosine) (pTreGuo) glycopolymers with free guanosine (fGuo) generates shear-thinning hydrogels through stabilized formation of long-range G-quadruplex secondary structures. Hydrogels with smooth or granular microstructures and mechanical properties spanning three orders of magnitude are produced through facile control of pTreGuo hydrogel composition. Injection of pTreGuo hydrogels into healthy mouse brains elicits minimal stromal cell infiltration and peripherally derived inflammation that is comparable to a bioinert methyl cellulose benchmarking material. pTreGuo hydrogels alter astrocyte borders and recruit microglia to infiltrate and resorb the hydrogel bulk over 7 d. Injections of pTreGuo hydrogels into ischemic stroke alter the natural responses of glial cells after injury to reduce the size of lesions and increase axon regrowth into lesion core environments. These results support the use of pTreGuo hydrogels as part of neural regeneration strategies to activate endogenous glia repair mechanisms.
中枢神经系统 (CNS) 损伤后,神经组织不会自然再生,而是被没有神经功能的非神经纤维瘢痕组织所取代。为了实现无瘢痕修复,以创造一个更有利于再生的环境,需要改变神经胶质细胞的自然损伤反应。在这项工作中,合成了基于糖聚物的超分子水凝胶,以指导 CNS 损伤后的适应性神经胶质修复。通过稳定形成长程 G-四链体二级结构,将聚(海藻糖-co-鸟苷)(pTreGuo)糖聚物与游离鸟苷(fGuo)结合,生成剪切变稀水凝胶。通过简单控制 pTreGuo 水凝胶组成,可以制备出具有平滑或颗粒状微观结构和跨越三个数量级的机械性能的水凝胶。将 pTreGuo 水凝胶注入健康小鼠大脑中,会引起最小的基质细胞浸润和外周衍生的炎症,与生物惰性甲基纤维素基准材料相当。pTreGuo 水凝胶改变星形胶质细胞边界,并募集小胶质细胞浸润并在 7 天内吸收水凝胶本体。将 pTreGuo 水凝胶注入缺血性中风中,会改变损伤后神经胶质细胞的自然反应,以减小病变大小并增加轴突向病变核心环境的再生。这些结果支持使用 pTreGuo 水凝胶作为神经再生策略的一部分,以激活内源性神经胶质修复机制。