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较小的微血管绝对数量但更高的相对密度与Lurcher小鼠的小脑变性有关。

Smaller Absolute Quantities but Greater Relative Densities of Microvessels Are Associated with Cerebellar Degeneration in Lurcher Mice.

作者信息

Kolinko Yaroslav, Cendelin Jan, Kralickova Milena, Tonar Zbynek

机构信息

Biomedical Center, Faculty of Medicine in Pilsen, Charles University in Prague Pilsen, Czech Republic.

出版信息

Front Neuroanat. 2016 Apr 19;10:35. doi: 10.3389/fnana.2016.00035. eCollection 2016.

Abstract

Degenerative affections of nerve tissues are often accompanied by changes of vascularization. In this regard, not much is known about hereditary cerebellar degeneration. In this study, we compared the vascularity of the individual cerebellar components and the mesencephalon of 3-month-old wild type mice (n = 5) and Lurcher mutant mice, which represent a model of hereditary olivocerebellar degeneration (n = 5). Paraformaldehyde-fixed brains were processed into 18-μm thick serial sections with random orientation. Microvessels were visualized using polyclonal rabbit anti-laminin antibodies. Then, the stacks comprised of three 5-μm thick optical sections were recorded using systematic uniform random sampling. Stereological assessment was conducted based on photo-documentation. We found that each of the cerebellar components has its own features of vascularity. The greatest number and length of vessels were found in the granular layer; the number of vessels was lower in the molecular layer, and the lowest number of vessels was observed in the cerebellar nuclei corresponding with their low volume. Nevertheless, the nuclei had the greatest density of blood vessels. The reduction of cerebellum volume in the Lurcher mice was accompanied by a reduction in vascularization in the individual cerebellar components, mainly in the cortex. Moreover, despite the lower density of microvessels in the Lurcher mice compared with the wild type mice, the relative density of microvessels in the cerebellar cortex and nuclei was greater in Lurcher mice. The complete primary morphometric data, in the form of continuous variables, is included as a supplement. Mapping of the cerebellar and midbrain microvessels has explanatory potential for studies using mouse models of neurodegeneration.

摘要

神经组织的退行性病变常伴有血管形成的改变。在这方面,关于遗传性小脑变性的了解并不多。在本研究中,我们比较了3月龄野生型小鼠(n = 5)和Lurcher突变小鼠(代表遗传性橄榄小脑变性模型,n = 5)的各个小脑成分和中脑的血管分布。将用多聚甲醛固定的大脑制成随机取向的18μm厚连续切片。使用兔抗层粘连蛋白多克隆抗体使微血管可视化。然后,使用系统均匀随机抽样记录由三个5μm厚光学切片组成的堆栈。基于照片记录进行体视学评估。我们发现每个小脑成分都有其自身的血管分布特征。在颗粒层中发现的血管数量和长度最多;分子层中的血管数量较少,而在小脑核中观察到的血管数量最少,这与其体积较小相对应。然而,小脑核的血管密度最大。Lurcher小鼠小脑体积的减小伴随着各个小脑成分血管形成的减少,主要是在皮质。此外,尽管Lurcher小鼠的微血管密度低于野生型小鼠,但Lurcher小鼠小脑皮质和核中的微血管相对密度更大。完整的以连续变量形式呈现的主要形态测量数据作为补充内容包含在内。小脑和中脑微血管的图谱绘制对使用神经退行性疾病小鼠模型的研究具有解释潜力。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/76f7/4835681/00f8a35d1076/fnana-10-00035-g0001.jpg

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