Suppr超能文献

锌离子对神经微管结构和分布的影响(作者译)

[Effect of zinc ions on structure and distribution of neurotubules (author's transl)].

作者信息

Krammer E B, Zenker W

出版信息

Acta Neuropathol. 1975;31(1):59-69. doi: 10.1007/BF00696887.

Abstract

Being interested in factors stabilizing neurotubules (NTs) in situ, we decided to immerse short segments of fresh rat peripheral nerves in buffered solutions containing ZnCl2 in final concentrations up to 10-2 m prior to fixation with buffered osmium or glutaraldehyde, both containing ZnCl2. Zinc treatment resulted in a remarkable structural preservation of NTs after fixation with osmium, though they are not preserved by osmium fixation alone. Cross sections of myelinated nerve fibres show NTs arranged predominantly in compact groups. Within the groups NTs are surrounded or embedded in an electron dense fine granular material. The occurrence of incomplete C-shaped NTs and NT-like densities can be seen. NTs exhibit relatively constant distances and sometimes geometric patterns of arrangement. A lot of intertubule cross bridges and NTs with arms could be observed. In longitudinal section the bridge and arm spacing is seen to be periodic along the tubule axis at about 500 A. Zinc treatment of nerves fixed in glutaraldehyde resulted in the same ultrastructural alterations described above. The resistance of zinc-stabilized NTs to degradation by osmium and the ultrastructural changes induced by zinc are discussed. The results suggest that in the presence of zinc ions osmium-labile NTs are transformed--by disassembly and reassembly--to osmium-stabile microtubules that are not identical with preexisting ones.

摘要

由于对原位稳定神经微管(NTs)的因素感兴趣,我们决定在使用含ZnCl₂的缓冲锇或戊二醛固定之前,将新鲜大鼠外周神经的短节段浸入最终浓度高达10⁻²m的含ZnCl₂的缓冲溶液中。锌处理导致用锇固定后NTs有显著的结构保存,尽管仅用锇固定不能保存它们。有髓神经纤维的横切面显示NTs主要排列成紧密的束。在束内,NTs被电子致密的细颗粒物质包围或嵌入其中。可以看到不完全C形NTs和类NTs密度的出现。NTs表现出相对恒定的间距,有时还有几何排列模式。可以观察到许多微管间的交叉桥和有臂的NTs。在纵切面上,桥和臂的间距沿微管轴呈周期性,约为500埃。用锌处理戊二醛固定的神经导致了上述相同的超微结构改变。讨论了锌稳定的NTs对锇降解的抗性以及锌诱导的超微结构变化。结果表明,在锌离子存在下,对锇不稳定的NTs通过拆卸和重新组装转化为与先前存在的不同的对锇稳定的微管。

文献AI研究员

20分钟写一篇综述,助力文献阅读效率提升50倍。

立即体验

用中文搜PubMed

大模型驱动的PubMed中文搜索引擎

马上搜索

文档翻译

学术文献翻译模型,支持多种主流文档格式。

立即体验