再生(生物学)
周围神经损伤
神经保护
细胞生物学
神经再生
化学
活性氧
神经导管
神经损伤
神经科学
生物
作者
Xianzhen Dong,Hao Zhang,Ping Duan,Kun Liu,Yifeng Yu,Wenying Wei,Weixing Wang,Yanxia -. Liu,Qiang Cheng,Xinyue Liang,Yuanfang Huo,Lesan Yan,Aixi Yu,Honglian Dai
出处
期刊:Science Advances
[American Association for the Advancement of Science (AAAS)]
日期:2023-12-20
卷期号:9 (51)
被引量:11
标识
DOI:10.1126/sciadv.adi1078
摘要
Peripheral nerve regeneration is a complex physiological process. Single-function nerve scaffolds often struggle to quickly adapt to the imbalanced regenerative microenvironment, leading to slow nerve regeneration and limited functional recovery. In this study, we demonstrate a "pleiotropic gas transmitter" strategy based on endogenous reactive oxygen species (ROS), which trigger the on-demand H2S release at the defect area for transected peripheral nerve injury (PNI) repair through concurrent neuroregeneration and neuroprotection processing. This H2S delivery system consists of an H2S donor (peroxyTCM) encapsulated in a ROS-responsive polymer (mPEG-PMet) and loaded into a temperature-sensitive poly (amino acid) hydrogel (mPEG-PA-PP). This multi-effect combination strategy greatly promotes the regeneration of PNI, attributed to the physiological effects of H2S. These effects include the inhibition of inflammation and oxidative stress, protection of nerve cells, promotion of angiogenesis, and the restoration of normal mitochondrial function. The adaptive release of pleiotropic messengers to modulate the tissue regeneration microenvironment offers promising peripheral nerve repair and tissue engineering opportunities.
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