Gushang Xia, Renjie Shuai, Ze Li, Changlin Tang, Yaowen Zhang, Qingli Kong, Wanyou Li, Fangfang Ma, Xianglin Li, Yan Du
Traumatic spinal cord injury (SCI) is characterized by excessive reactive oxygen species (ROS) accumulation coupled with a sustained acidic lesion microenvironment, both of which severely hinder endogenous neural tissue repair. This study reports the fabrication and comprehensive in vitro and in vivo validation of a thermosensitive injectable hydrogel embedded with ROS-eliminating nanoparticles (DHA-PLL-TPL nanoparticles hydrogel,DT NP-Hydrogel) for localized SCI treatment. In hydrogen peroxide-challenged primary spinal cord neuron cultures and weight-drop contusion rat SCI models, locally injected DT NP-Hydrogel significantly reduced oxidative stress marker 4-hydroxynonenal (4HNE), pro-apoptotic Caspase-3(Casp3) expression, and gap junction protein connexin 43 (Cx43) levels, while simultaneously upregulating the neuron-specific marker class III β-tubulin (Tuj1). Collectively, our in vitro and in vivo data demonstrate that DT NP-Hydrogel mitigates secondary spinal cord damage and delivers potent neuroprotective activity, establishing it as a promising therapeutic strategy for SCI.