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在鱿鱼中,分子从神经胶质细胞向轴突的转移可能由神经胶质小泡介导。

Transfer of molecules from glia to axon in the squid may be mediated by glial vesicles.

作者信息

Buchheit T E, Tytell M

机构信息

Marine Biological Laboratory, Woods Hole, Massachusetts 02543.

出版信息

J Neurobiol. 1992 Apr;23(3):217-30. doi: 10.1002/neu.480230303.

Abstract

Although the transfer of glial proteins into the squid giant axon is well documented, the mechanism of the transfer remains unknown. We examined the possibility that the transfer involved membrane-bound vesicles, by taking advantage of the fact that the fluorescent compound, 3,6-acridinediamine, N,N,N,',N'-tetramethylmonohydride [acridine orange (AO)], rapidly and selectively stains vesicular structures in glial cells surrounding the giant axon. We labeled cleaned axons (1-3 cm long) by incubation for 1 min in filtered seawater (FSW) containing AO. Because the AO was concentrated in glial vesicular organelles, these fluoresced bright orange when the axon was examined by epifluorescence microscopy. To look for vesicle transfer, axoplasm was extruded from such AO-treated axons at various times after labeling. During the initial 15 min, an increasing number of fluorescent vesicles were observed. No further increases were observed between 15 and 60 min post AO. The transfer of the fluorescent vesicles into the axoplasm seemed to be energy dependent, as it was inhibited in axons treated with 2 mM KCN. These results suggest that a special mode of exchange exists between the adaxonal glia and the axon, perhaps involving phagocytosis by the axon of small portions of the glial cells.

摘要

尽管胶质蛋白向鱿鱼巨大轴突的转移已有充分记录,但转移机制仍不清楚。我们利用荧光化合物3,6-吖啶二胺,N,N,N',N'-四甲基一氢化物[吖啶橙(AO)]能快速且选择性地标记巨大轴突周围胶质细胞中囊泡结构这一事实,研究了转移过程涉及膜结合囊泡的可能性。我们将清洁后的轴突(1 - 3厘米长)在含有AO的过滤海水中孵育1分钟进行标记。由于AO集中在胶质囊泡细胞器中,当用落射荧光显微镜检查轴突时,这些细胞器发出明亮的橙色荧光。为了寻找囊泡转移,在标记后的不同时间从这些经AO处理的轴突中挤出轴浆。在最初的15分钟内,观察到荧光囊泡的数量不断增加。在AO处理后15至60分钟之间未观察到进一步增加。荧光囊泡向轴浆的转移似乎依赖能量,因为在用2 mM KCN处理的轴突中这种转移受到抑制。这些结果表明,轴突旁胶质细胞和轴突之间存在一种特殊的交换方式,可能涉及轴突对胶质细胞小部分的吞噬作用。

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