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细胞内钙升高诱导的水泡性脱髓鞘。

Vesicular demyelination induced by raised intracellular calcium.

作者信息

Smith K J, Hall S M, Schauf C L

出版信息

J Neurol Sci. 1985 Nov;71(1):19-37. doi: 10.1016/0022-510x(85)90034-6.

Abstract

Incubation of nerve with high concentrations of the divalent cation ionophore A23187 produces myelin vesiculation (Schlaepfer 1977). This observation has now been extended using segments of rat ventral or dorsal root incubated with high (19 microM, 10 micrograms/ml) or low (1-1.5 microM) concentrations of A23187, or another divalent ionophore, ionomycin. Low concentrations of A23187 induced no vesiculation within a 2-h period. However, subsequent incubation of these roots in fresh, ionophore-free medium for 20 h, resulted in a prominent vesicular demyelination at the Schmidt-Lanterman incisures and paranodes of many fibres. At this time (22 h) the Schwann cells associated with some demyelinating internodes appeared vital upon ultrastructural examination: the cells also excluded the nuclear dye nigrosin. High concentrations of A23187 induced a similar vesicular demyelination in affected fibres within only 15-20 min. While the Schwann cells continued to exclude nigrosin for a further 4 h, their ultrastructural appearance indicated that they were probably in the early stages of necrosis. Incubation of moribund root with the ionophore produced no myelin vesiculation. At all ionophore concentrations, the myelin vesiculation was dependent upon the presence of extracellular Ca2+, and could be modulated in severity by varying this concentration. Other divalent cations (Ba2+, Co2+, Mg2+, Mn2+, Ni2+, Sr2+) could not substitute for Ca2+. The vesiculation induced by A23187 could be entirely prevented by the addition of Zn2+ (greater than or equal to 1 microM), Ni2+ (greater than or equal to 1-10 microM), Co2+ (greater than or equal to 100 microM) or Mn2+ (greater than or equal to 100 microM) to the bathing medium. A23187 applied to only part of an isolated internode resulted in a localization of the myelin disruption to that region. Ionomycin (greater than or equal to 1 microM), an ionophore with a greater selectivity for Ca2+ than A23187, also induced a prompt Ca2+-dependent myelin vesiculation. We conclude that vesicular demyelination can be initiated in vital Schwann cells by a raised intracellular Ca2+ concentration. Such demyelination does not necessarily lead to Schwann cell death. The possible relevance of the findings to vesicular demyelinating neuropathies is discussed, and a hypothesis regarding the mechanism of demyelination is advanced.

摘要

用高浓度的二价阳离子载体A23187孵育神经会产生髓鞘空泡化(施莱普费尔,1977年)。现在,这一观察结果已得到扩展,采用了大鼠腹根或背根节段,分别用高浓度(19微摩尔/升,10微克/毫升)或低浓度(1 - 1.5微摩尔/升)的A23187,或另一种二价离子载体离子霉素进行孵育。低浓度的A23187在2小时内未诱导空泡化。然而,随后将这些神经根在不含离子载体的新鲜培养基中孵育20小时,导致许多纤维的施密特 - 兰特尔曼切迹和结旁出现明显的空泡性脱髓鞘。此时(22小时),与一些脱髓鞘节间相关的施万细胞在超微结构检查中看起来是存活的:这些细胞也排斥核染料黑色素。高浓度的A23187在仅15 - 20分钟内就在受影响的纤维中诱导出类似的空泡性脱髓鞘。虽然施万细胞在接下来的4小时内继续排斥黑色素,但其超微结构外观表明它们可能处于坏死的早期阶段。用离子载体孵育濒死的神经根未产生髓鞘空泡化。在所有离子载体浓度下,髓鞘空泡化都依赖于细胞外Ca2 +的存在,并且可以通过改变该浓度来调节其严重程度。其他二价阳离子(Ba2 +、Co2 +、Mg2 +、Mn2 +、Ni2 +、Sr2 +)不能替代Ca2 +。通过向浴液中添加Zn2 +(大于或等于1微摩尔/升)、Ni2 +(大于或等于1 - 10微摩尔/升)、Co2 +(大于或等于100微摩尔/升)或Mn2 +(大于或等于100微摩尔/升),可以完全防止A23187诱导的空泡化。将A23187仅应用于分离节间的一部分会导致髓鞘破坏局限于该区域。离子霉素(大于或等于1微摩尔/升),一种对Ca2 +比A23187具有更高选择性的离子载体,也诱导了迅速的Ca2 +依赖性髓鞘空泡化。我们得出结论,细胞内Ca2 +浓度升高可在存活的施万细胞中引发空泡性脱髓鞘。这种脱髓鞘不一定导致施万细胞死亡。讨论了这些发现与空泡性脱髓鞘性神经病的可能相关性,并提出了一个关于脱髓鞘机制的假说。

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