| Literature DB >> 32316901 |
Jiawei Shu1, Feng Cheng1, Zhe Gong1, Liwei Ying1, Chenggui Wang1, Chao Yu1, Xiaopeng Zhou1, Mu Xiao2, Jingkai Wang1, Kaishun Xia1, Xianpeng Huang1, Yiqing Tao1, Kesi Shi1, Yuemei Liu2, Chengzhen Liang1, Qixin Chen1, Xinhua Feng2, Fangcai Li1.
Abstract
Spinal cord injury (SCI) is different from peripheral nerve injury; it results in devastating and permanent damage to the spine, leading to severe motor, sensory and autonomic dysfunction. SCI produces a complex microenvironment that can result in hemorrhage, inflammation and scar formation. Not only does it significantly limit regeneration, but it also challenges a multitude of transplantation strategies. In order to promote regeneration, researchers have recently begun to focus their attention on strategies that manipulate the complicated microenvironment produced by SCI. And some have achieved great therapeutic effects. Hence, reconstructing an appropriate microenvironment after transplantation could be a potential therapeutic solution for SCI. In this review, first, we aim to summarize the influential compositions of the microenvironment and their different effects on regeneration. Second, we highlight recent research that used various transplantation strategies to modulate different microenvironments produced by SCI in order to improve regeneration. Finally, we discuss future transplantation strategies regarding SCI. Copyright© Bentham Science Publishers; For any queries, please email at epub@benthamscience.net.Entities:
Keywords: Spinal cord injury; biomaterials; microenvironment; regeneration; stem cells; transplantation
Mesh:
Year: 2020 PMID: 32316901 DOI: 10.2174/1574888X15666200421112622
Source DB: PubMed Journal: Curr Stem Cell Res Ther ISSN: 1574-888X Impact factor: 3.828