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Probing the influence of myelin and glia on the tensile properties of the spinal cord

机译:探究髓磷脂和神经胶质对脊髓拉伸特性的影响

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Although glia have been historically classified as the structurally supporting cells of the central nervous system, their role in tissue mechanics is still largely unstudied. The influence of myelin and glia on the mechanical properties of spinal cord tissue was examined by testing embryonic day 18 chick embryo spinal cords in uniaxial tension following disruption of the glial matrix using either ethidium bromide (EB) or an antibody against galactocerebroside (αGalC) in the presence of complement. Demyelination was confirmed by myelin basic protein immunoreactivity and quantified using osmium tetroxide staining. A substantial loss of astrocytes and oligodendrocytes concurrent with demyelination was observed following EB injection but not αGalC injection. No morphological changes were observed following injection of saline or IgG with complement as controls for EB and αGalC. Demyelinated spinal cords demonstrated significantly lower stiffness and ultimate tensile stress than myelinated spinal cords. No significant differences were observed in the tensile response between the two demyelinating protocols. The results demonstrate that the glial matrix provides significant mechanical support to the spinal cord, and suggests that myelin and cellular coupling of axons via the glial matrix in large part dictates the tensile response of the tissue.
机译:尽管神经胶质在历史上被归类为中枢神经系统的结构支持细胞,但它们在组织力学中的作用仍未被研究。通过使用溴化乙锭(EB)或抗半乳糖脑苷脂(αGalC)的神经胶质基质破坏神经胶质基质后,通过测试胚胎第18天小鸡胚胎脊髓在单轴张力中,检查了髓磷脂和神经胶质对脊髓组织机械特性的影响。补体的存在。通过髓磷脂碱性蛋白免疫反应性证实脱髓鞘,并使用四氧化染色定量。 EB注射后观察到星形胶质细胞和少突胶质细胞大量损失,同时脱髓鞘,但αGalC注射后未见。注射盐水或IgG补体作为EB和αGalC的对照后,未观察到形态变化。与脱髓鞘的脊髓相比,脱髓鞘的脊髓表现出明显更低的刚度和极限拉伸应力。在两种脱髓鞘方案之间的拉伸响应中未观察到显着差异。结果表明,神经胶质基质为脊髓提供了显着的机械支撑,并表明髓磷脂和轴突经由神经胶质基质的细胞偶联在很大程度上决定了组织的拉伸反应。

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