Neural Regeneration Research ›› 2026, Vol. 21 ›› Issue (9): 4290-4296.doi: 10.4103/NRR.NRR-D-25-01291

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Biomaterial gels drive endogenous neurogenesis to support functional recovery after adult traumatic cortical injury

Jinting Wu1, #, Peng Hao2, #, Hongmei Duan2, #, Wen Zhao2, Yudan Gao2, Zhiqiang Cui1, *, Zhaoyang Yang2, *, Xiaoguang Li2, *   

  1. 1Department of Neurosurgery, Tsinghua University Yuquan Hospital, School of Clinical Medicine, Tsinghua University, Beijing, China; 
    2Department of Neurobiology, School of Basic Medical Sciences, Capital Medical University, Beijing, China
  • Online:2026-09-15 Published:2026-05-21
  • Contact: Zhaoyang Yang, PhD, wack_lily@163.com; Zhiqiang Cui, PhD, 1656957600@qq.com; Xiaoguang Li, PhD, lxgchina@sina.com.
  • Supported by:
    This study was supported by the National Natural Science Foundation of China, Nos. 82272171 (to ZY), 82271403 (to XL), 81941011 (to XL), 31971279 (to ZY), 31730030 (to XL); Tsinghua Precision Medicine Foundation, No. 10001020129 (to JW).

Abstract:

Activation and neuronal differentiation of endogenous neural stem/progenitor cells within the hippocampal neurogenic niche (a neurogenic region) of the adult mammalian brain are considered potential bases for restoration of cognitive and memory functions. However, following traumatic cortical brain injury (i.e., injuries in a non-neurogenic region), the local microenvironment becomes hostile due to the presence of inhibitory factors such as inflammation, edema, and hypoxic–ischemic stress. These conditions hinder the migration and subsequent neuronal differentiation of activated neural stem/progenitor cells into the injured cortex. Numerous recent studies have confirmed that biomaterials can improve the microenvironment of the injured area and promote nerve regeneration. In this study, we report the findings obtained by injecting a biodegradable chitosan–gelatin–collagen gel into the cortical lesion area. We observed that the chitosan–gelatin–collagen gel established a permissive microenvironment for neural repair by suppressing inflammation and scar infiltration while promoting neovascularization. Thus, it enabled activated endogenous “seed” cells, i.e., neural stem/progenitor cells, to migrate into the cortical lesion area and generate new neurons and thereby facilitate functional recovery. These findings represent a novel biomaterial-based therapeutic strategy for the treatment of traumatic cortical brain injury, stroke, and other neurological disorders.

Key words: biomaterial gel, chitosan–gelatin–collagen gel, endogenous neural stem cell, functional recovery, newborn neuron, traumatic cortical brain injury