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Pushing the science forward: chitosan nanoparticles and functional repair of CNS tissue after spinal cord injury

机译:推动科学向前发展:壳聚糖纳米粒子与脊髓损伤后中枢神经系统组织的功能修复

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Background We continue our exploration of the large polysaccharide polymer Chitosan as an acute therapy for severe damage to the nervous system. We tested the action of subcutaneously injected nanoparticles (~ 100 – 200 nanometers in diameter; 1mg per ml) against control injections (silica particle of the same size and concentration) in a standardized in vivo spinal cord injury model. These functional tests used standardized physiological measurements of evoked potentials arriving at the sensorimotor cortex subsequent to stimulation of the tibial nerve of the contralateral hindlimb. We further explored the degree of acetylation and molecular weight of chitosan on the success of sealing cell damage using specific probes of membrane integrity.
机译:背景技术我们继续探索大型多糖聚合物壳聚糖作为对神经系统造成严重损害的急性疗法。在标准的体内脊髓损伤模型中,我们测试了皮下注射的纳米颗粒(直径约100-200纳米;每毫升1mg)对对照注射剂(大小和浓度相同的二氧化硅颗粒)的作用。这些功能测试使用了标准化的生理测量,以测量对侧后肢的胫神经刺激后到达感觉运动皮层的诱发电位。我们使用特定的膜完整性探针进一步研究了壳聚糖乙酰化程度和分子量对成功密封细胞造成的损害。

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