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Role and prospects of regenerative biomaterials in the repair of spinal cord injury 被引量:19

Role and prospects of regenerative biomaterials in the repair of spinal cord injury
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摘要 Axonal junction defects and an inhibitory environment after spinal cord injury seriously hinder the regeneration of damaged tissues and neuronal functions. At the site of spinal cord injury, regenerative biomaterials can fill cavities, deliver curative drugs, and provide adsorption sites for transplanted or host cells. Some regenerative biomaterials can also inhibit apoptosis, inflammation and glial scar formation, or further promote neurogenesis, axonal growth and angiogenesis. This review summarized a variety of biomaterial scaffolds made of natural, synthetic, and combined materials applied to spinal cord injury repair. Although these biomaterial scaffolds have shown a certain therapeutic effect in spinal cord injury repair, there are still many problems to be resolved, such as product standards and material safety and effectiveness. Axonal junction defects and an inhibitory environment after spinal cord injury seriously hinder the regeneration of damaged tissues and neuronal functions. At the site of spinal cord injury, regenerative biomaterials can fill cavities, deliver curative drugs, and provide adsorption sites for transplanted or host cells. Some regenerative biomaterials can also inhibit apoptosis, inflammation and glial scar formation, or further promote neurogenesis, axonal growth and angiogenesis. This review summarized a variety of biomaterial scaffolds made of natural, synthetic, and combined materials applied to spinal cord injury repair. Although these biomaterial scaffolds have shown a certain therapeutic effect in spinal cord injury repair, there are still many problems to be resolved, such as product standards and material safety and effectiveness.
出处 《Neural Regeneration Research》 SCIE CAS CSCD 2019年第8期1352-1363,共12页 中国神经再生研究(英文版)
基金 supported by the National Natural Science Foundation of China,No.81571213(to BW),No.81800583(to YYX) the 13~(th) Six Talent Peaks Project(C type)of Jiangsu Province of China(to BW) the Medical Science and Technique Development Foundation of Nanjing of China,No.QRX17006(to BW) the Medical Science and Innovation Platform of Nanjing of China,No.ZDX16005(to BW)
关键词 nerve REGENERATION spinal CORD injury REGENERATIVE BIOMATERIALS scaffolds tissue engineering REGENERATION transplantation combination functional recovery REPAIR strategy MICROENVIRONMENT neural REGENERATION nerve regeneration spinal cord injury regenerative biomaterials scaffolds tissue engineering regeneration transplantation combination functional recovery repair strategy microenvironment neural regeneration
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