Alginate self-adhesive hydrogel combined with dental pulp stem cells and FGF21 repairs hemisection spinal cord injury via apoptosis and autophagy mechanisms

Author:

Zhu Sipin,Ying Yibo,Wu Qiuji,Ni Zhichao,Huang Zhiyang,Cai Peihan,Tu Yurong,Ying Weiyang,Ye Jiahui,Zhang Renkan,Zhang Yifan,Chen Min,Xiang Ziyue,Dou Haicheng,Huang Qishan,Li Xiaokun,He Huacheng,Xiao Jian,Ye Qingsong,Wang Zhouguang

Publisher

Elsevier BV

Subject

Industrial and Manufacturing Engineering,General Chemical Engineering,Environmental Chemistry,General Chemistry

Reference83 articles.

1. Global, regional, and national burden of traumatic brain injury and spinal cord injury, 1990-2016: a systematic analysis for the Global Burden of Disease Study 2016, The Lancet. Neurology 18 (2019) 56-87.

2. F. Geisler, W. Coleman, Spinal cord injury, Lancet (London, England) 360 (2002) 1883; author reply 1884.

3. Restoring function after spinal cord injury: towards clinical translation of experimental strategies;Ramer;The Lancet. Neurology,2014

4. PKC mediates inhibitory effects of myelin and chondroitin sulfate proteoglycans on axonal regeneration;Sivasankaran;Nat. Neurosci.,2004

5. Combination of a peptide-modified gellan gum hydrogel with cell therapy in a lumbar spinal cord injury animal model;Gomes;Biomaterials,2016

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