Institute of Experimental Medicine of the Czech Academy of Sciences, Videnska 1083, 14220, Prague, Czech Republic.
Neurochem Res. 2020 Jan;45(1):171-179. doi: 10.1007/s11064-019-02808-2. Epub 2019 Apr 26.
Spinal cord injury (SCI) is a serious trauma, which often results in a permanent loss of motor and sensory functions, pain and spasticity. Despite extensive research, there is currently no available therapy that would restore the lost functions after SCI in human patients. Advanced treatments use regenerative medicine or its combination with various interdisciplinary approaches such as tissue engineering or biophysical methods. This review summarizes and critically discusses the research from specific interdisciplinary fields in SCI treatment such as the development of biomaterials as scaffolds for tissue repair, and using a magnetic field for targeted cell delivery. We compare the treatment effects of synthetic non-degradable methacrylate-based hydrogels and biodegradable biological scaffolds based on extracellular matrix. The systems using magnetic fields for magnetically guided delivery of stem cells loaded with magnetic nanoparticles into the lesion site are then suggested and discussed.
脊髓损伤(SCI)是一种严重的创伤,常导致运动和感觉功能永久丧失、疼痛和痉挛。尽管进行了广泛的研究,但目前尚无可用的疗法可以在人类患者的 SCI 后恢复丧失的功能。先进的治疗方法采用再生医学或其与各种跨学科方法的结合,如组织工程或生物物理方法。这篇综述总结并批判性地讨论了 SCI 治疗中特定跨学科领域的研究,例如作为组织修复支架的生物材料的开发,以及使用磁场进行靶向细胞输送。我们比较了合成不可降解的甲基丙烯酸盐基水凝胶和基于细胞外基质的可生物降解生物支架的治疗效果。然后提出并讨论了使用磁场将负载磁性纳米颗粒的干细胞磁引导输送到病变部位的系统。