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C57BL/Wlds小鼠华勒氏变性过程中肌腱蛋白-C的表达:对轴突再生的潜在影响

Tenascin-C expression during wallerian degeneration in C57BL/Wlds mice: possible implications for axonal regeneration.

作者信息

Fruttiger M, Schachner M, Martini R

机构信息

Swiss Federal Institue of Technology, Zurich.

出版信息

J Neurocytol. 1995 Jan;24(1):1-14. doi: 10.1007/BF01370156.

Abstract

Schwann cells in the distal stumps of lesioned peripheral nerves strongly express the extracellular matrix glycoprotein tenascin-C. To gain insights into the relationship between Wallerian degeneration, lesion induced tenascin-C upregulation and regrowth of axons we have investigated C57BL/Wlds (C57BL/Ola) mice, a mutant in which Wallerian degeneration is considerably delayed. Since we found a distinct difference in the speed of Wallerian degeneration between muscle nerves and cutaneous nerves in 16-week-old C57BL/Wlds mice, as opposed to 6-week-old animals in which Wallerian degeneration is delayed in both, we chose the older animals for closer investigation. Five days post lesion tenascin-C was upregulated in the muscle branch (quadriceps) but not in the cutaneous branch (saphenous) of the femoral nerve in 16-week-old animals. In addition myelomonocytic cells displaying endogenous peroxidase activity invaded the muscle branch readily whereas they were absent from the cutaneous branch at this time. We could further show that it is only a subpopulation of axon-Schwann cell units (mainly muscle efferents) in the muscle branch which undergo Wallerian degeneration and upregulate tenascin-C at normal speed and that the remaining axon-Schwann cell units (mainly afferents) displayed delayed Wallerian degeneration and no tenascin-C expression. Regrowing axons could only be found in the tenascin-C-positive muscle branch where they always grew in association with axon-Schwann cell units undergoing Wallerian degeneration. These observations indicate a tight relationship between Wallerian degeneration, upregulation of tenascin-C expression and regrowth of axons, suggesting an involvement of tenascin-C in peripheral nerve regeneration.

摘要

在受损周围神经远端残端的施万细胞强烈表达细胞外基质糖蛋白腱生蛋白-C。为深入了解沃勒变性、损伤诱导的腱生蛋白-C上调与轴突再生之间的关系,我们研究了C57BL/Wlds(C57BL/Ola)小鼠,这是一种沃勒变性显著延迟的突变体。由于我们发现16周龄的C57BL/Wlds小鼠的肌肉神经和皮神经在沃勒变性速度上存在明显差异,而6周龄的动物中两者的沃勒变性均延迟,所以我们选择年龄较大的动物进行更深入的研究。损伤后5天,16周龄动物股神经的肌肉分支(股四头肌)中腱生蛋白-C上调,但皮分支(隐神经)中未上调。此外,显示内源性过氧化物酶活性的骨髓单核细胞很容易侵入肌肉分支,而此时皮分支中没有这种细胞。我们还可以进一步表明,只有肌肉分支中的一部分轴突-施万细胞单元(主要是肌肉传出纤维)以正常速度发生沃勒变性并上调腱生蛋白-C,而其余的轴突-施万细胞单元(主要是传入纤维)则表现出延迟的沃勒变性且无腱生蛋白-C表达。再生轴突仅在腱生蛋白-C阳性的肌肉分支中发现,它们总是与发生沃勒变性的轴突-施万细胞单元一起生长。这些观察结果表明沃勒变性、腱生蛋白-C表达上调与轴突再生之间存在紧密关系,提示腱生蛋白-C参与周围神经再生。

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