牙髓干细胞
间充质干细胞
脊髓损伤
体内
再生(生物学)
干细胞
材料科学
干细胞疗法
自愈水凝胶
生物医学工程
医学
化学
细胞生物学
脊髓
病理
生物
高分子化学
生物技术
精神科
作者
Abdullkhaleg Ali Albashari,Yan He,Peibang He,Xingxiang Duan,Jihea Ali,Mingchang Li,Dehao Fu,Yangfan Xiang,Youjian Peng,Song Li,Lihua Luo,Xingjie Zan,Tushar Kumeria,Qingsong Ye
标识
DOI:10.1002/adhm.202302286
摘要
Abstract Spinal cord injury (SCI) commonly induces nerve damage and nerve cell degeneration. In this work, a novel dental pulp stem cells (DPSCs) encapsulated thermoresponsive injectable hydrogel with sustained hydrogen sulfide (H 2 S) delivery is demonstrated for SCI repair. For controlled and sustained H 2 S gas therapy, a clinically tested H 2 S donor (JK) loaded octysilane functionalized mesoporous silica nanoparticles (OMSNs) are incorporated into the thermosensitive hydrogel made from Pluronic F127 (PF‐127). The JK‐loaded functionalized MSNs (OMSF@JK) promote preferential M2‐like polarization of macrophages and neuronal differentiation of DPSCs in vitro. OMSF@JK incorporated PF‐127 injectable hydrogel (PF‐OMSF@JK) has a soft consistency similar to that of the human spinal cord and thus, shows a high cytocompatibility with DPSCs. The cross‐sectional micromorphology of the hydrogel shows a continuous porous structure. Last, the PF‐OMSF@JK composite hydrogel considerably improves the in vivo SCI regeneration in Sprague–Dawley rats through a reduction in inflammation and neuronal differentiation of the incorporated stem cells as confirmed using western blotting and immunohistochemistry. The highly encouraging in vivo results prove that this novel design on hydrogel is a promising therapy for SCI regeneration with the potential for clinical translation.
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