Combination of a Gellan Gum-Based Hydrogel With Cell Therapy for the Treatment of Cervical Spinal Cord Injury

医学 脊髓损伤 前肢 脊髓 复合肌肉动作电位 膈神经 麻醉 干细胞疗法 解剖 呼吸系统 外科 电生理学 内科学 移植 精神科
作者
Eduardo D. Gomes,Biswarup Ghosh,Rui Lima,Miguel Goulão,Tiago Moreira‐Gomes,Joana Martins‐Macedo,Mark W. Urban,Megan C. Wright,Jeffrey M. Gimble,Nuno Sousa,Nuno A. Silva,Angelo C. Lepore,António J. Salgado
出处
期刊:Frontiers in Bioengineering and Biotechnology [Frontiers Media SA]
卷期号:8 被引量:14
标识
DOI:10.3389/fbioe.2020.00984
摘要

Cervical spinal cord trauma represents more than half of the spinal cord injury (SCI) cases worldwide. Respiratory compromise, as well as severe limb motor deficits, are among the main consequences of cervical lesions. In the present work, a Gellan Gum (GG)-based hydrogel modified with GRGDS peptide, together with Adipose tissue-derived Stem/Stromal Cells (ASCs) and Olfactory Ensheathing Cells (OECs), was used as a therapeutic strategy after a C2 hemisection SCI in rats. Hydrogel or cells alone, and a control group without treatment, were also tested. Four weeks after injury, compound muscle action potentials (CMAPs) were performed to assess functional phrenic motor neuron (PhMN) innervation of the diaphragm; no differences were observed amongst groups, confirming that the PhMN pool located between C3 and C5 was not affected by the C2 injury or by the treatments. Five weeks post-injury, inspiratory bursting of the affected ipsilateral hemidiaphragm was evaluated through EMG recordings of dorsal, medial and ventral subregions of the muscle. All treatments significantly increased EMG amplitude at the ventral portion in comparison to the untreated control, but only the combinatorial group presented increased EMG amplitude at the medial portion of the hemidiaphragm. Moreover, using Von Frey testing of mechanical allodynia, it was possible to find a significant effect of the group combining hydrogel and cells on hypersensitivity; rats with a SCI displayed an increased response of the contralateral forelimb to a normally-innocuous mechanical stimulus, but after treatment with the combinatorial therapy this behavior was reverted almost to the levels of uninjured controls. These results suggest that our therapeutic approach may have beneficial effects on both diaphragmatic recovery and sensory function.
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