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原位注射水凝胶在脊髓再生中的应用:过去 10 年的进展。

In situ injectable hydrogels for spinal cord regeneration: advances from the last 10 years.

出版信息

Biomed Phys Eng Express. 2019 Nov 25;6(1):012002. doi: 10.1088/2057-1976/ab52e8.

Abstract

Spinal cord injury (SCI) is a tremendously devastating disorder with no effective therapy. Neuroprotective strategies have been applied aiming to prevent secondary cell death but no successful and robust effects have been observed. Recently, combinatorial approaches using biomaterials with cells and/or growth factors have demonstrated promising therapeutic effects because of the improvement of axonal growth and in vivo functional recovery in model organisms. In situ injectable hydrogels are a particularly attractive neuroregenerative approach to improve spinal cord repair and regeneration since they can be precisely injected into the lesion site filling the space prior to gelification, decrease scarring and promote axon growth due to the hydrogel's soft structure. Important advances regarding the use of hydrogels as potential therapeutic approaches has been reported during the last 10 years. Injectable alginate hydrogel loaded with GDNF, thermoresponsives heparin-poloxamer loaded with NGF and imidazole-poly(organophosphazenes) hydrogels are just three examples of biomaterials that can promote neurite, axon growth and improve functional recovery in hemisected and resected rats. Here we will review the status of in situ injectable hydrogels for spinal cord regeneration with special focus in the advantages of using hydrogel scaffolds, the ideal polymers to be used, the gelification process and the cells or growth factors combined. The in vitro and in vivo results reported for those biomaterials will be presented, compared and discussed.

摘要

脊髓损伤 (SCI) 是一种极其严重的疾病,目前尚无有效的治疗方法。神经保护策略已被应用于预防继发性细胞死亡,但尚未观察到成功和稳健的效果。最近,使用细胞和/或生长因子的生物材料组合方法已显示出有前途的治疗效果,因为在模型生物中改善了轴突生长和体内功能恢复。原位可注射水凝胶是一种特别有吸引力的神经再生方法,可改善脊髓修复和再生,因为它们可以在凝胶化之前精确地注射到损伤部位,填充空间,减少疤痕形成并促进轴突生长,这是由于水凝胶的软结构。在过去的 10 年中,已经报道了关于水凝胶作为潜在治疗方法的重要进展。负载 GDNF 的可注射藻酸盐水凝胶、负载 NGF 的温敏性肝素-泊洛沙姆和咪唑-聚(有机膦腈)水凝胶只是三种可以促进半切和切除大鼠的神经突、轴突生长和改善功能恢复的生物材料的例子。在这里,我们将回顾用于脊髓再生的原位可注射水凝胶的现状,特别关注使用水凝胶支架的优势、理想的聚合物、凝胶化过程以及结合的细胞或生长因子。将介绍、比较和讨论这些生物材料的体外和体内结果。

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