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Combined Use of Chitosan and Olfactory Mucosa Mesenchymal Stem/Stromal Cells to Promote Peripheral Nerve Regeneration In Vivo

机译:结合壳聚糖和嗅粘膜间充质茎/基质细胞促进体内周围神经再生

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Peripheral nerve injury remains a clinical challenge with severe physiological and functional consequences. Despite the existence of multiple possible therapeutic approaches, until now, there is no consensus regarding the advantages of each option or the best methodology in promoting nerve regeneration. Regenerative medicine is a promise to overcome this medical limitation, and in this work, chitosan nerve guide conduits and olfactory mucosa mesenchymal stem/stromal cells were applied in different therapeutic combinations to promote regeneration in sciatic nerves after neurotmesis injury. Over 20 weeks, the intervened animals were subjected to a regular functional assessment (determination of motor performance, nociception, and sciatic indexes), and after this period, they were evaluated kinematically and the sciatic nerves and cranial tibial muscles were evaluated stereologically and histomorphometrically, respectively. The results obtained allowed confirming the beneficial effects of using these therapeutic approaches. The use of chitosan NGCs and cells resulted in better motor performance, better sciatic indexes, and lower gait dysfunction after 20 weeks. The use of only NGGs demonstrated better nociceptive recoveries. The stereological evaluation of the sciatic nerve revealed identical values in the different parameters for all therapeutic groups. In the muscle histomorphometric evaluation, the groups treated with NGCs and cells showed results close to those of the group that received traditional sutures, the one with the best final values. The therapeutic combinations studied show promising outcomes and should be the target of new future works to overcome some irregularities found in the results and establish the combination of nerve guidance conduits and olfactory mucosa mesenchymal stem/stromal cells as viable options in the treatment of peripheral nerves after injury.
机译:周围神经损伤仍然是具有严重生理和功能性后果的临床挑战。尽管存在多种可能的治疗方法,直到现在,对于各种选择或促进神经再生的最佳方法没有达成共识。再生医学是一种克服这种医疗限制的承诺,在这项工作中,壳聚糖神经引导管道和嗅觉粘膜间充质茎/基质细胞以不同的治疗组合施用,以促进神经间损伤后坐骨神经中的再生。超过20周,介入的动物进行常规功能评估(电动机性能,Nocieption和坐骨指标的测定),在此期间之后,它们在运动学中进行了评估,并且坐骨神经和颅胫骨肌肉在立体上和组织统计学上进行评估,分别。获得的结果允许确认使用这些治疗方法的有益效果。使用壳聚糖NGCS和细胞导致电机性能更好,坐标索引更好,并且在20周后降低步态功能障碍。只使用NGGS展示了更好的伤害恢复。坐骨神经的立体学评价显示所有治疗组的不同参数中的相同值。在肌肉组织形态学评价中,用NGC和细胞处理的基团显示结果接近接受传统缝合线的组的结果,其中一个最佳最终值。研究的治疗组合显示了有希望的结果,应该是新的未来作品的目标,以克服结果中发现的一些不规则性,并建立神经引导管道和嗅觉粘膜间充质茎/基质细胞的组合作为治疗外周神经的可行性选择受伤。

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