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小鼠角膜上皮神经支配随年龄的变化。

Changes in mouse corneal epithelial innervation with age.

机构信息

Key Laboratory for Regenerative Medicine, Ministry of Education and Department of Ophthalmology, Jinan University, Guangzhou, China.

出版信息

Invest Ophthalmol Vis Sci. 2012 Jul 27;53(8):5077-84. doi: 10.1167/iovs.12-9704.

Abstract

PURPOSE

We defined the quantitative changes in corneal epithelial nerve fibers during mouse development.

METHODS

Corneal whole mounts from 36 mice were immunostained with a specific anti-β-III tubulin antibody to label nerve fibers. Epithelial nerve fibers in the whole cornea were scanned and imaged using deconvolution microscopy. Subbasal nerve fiber and nerve terminal densities were calculated based on the length of nerve fibers located in each 1 mm² area of the corneal surface.

RESULTS

The epithelial nerve terminals and corneal surface areas increased at different rates; therefore, the variations in corneal epithelial nerve terminal density and number were asynchronous. The maximum epithelial nerve terminal density was reached at postnatal day 24, which remained constant until postnatal month 2 and then decreased significantly. However, the epithelial nerve terminal number increased significantly until postnatal month 2 and then subsequently decreased significantly. In contrast to the epithelial nerve terminal, the subbasal nerve fiber density and number increased significantly until postnatal month 2 and then decreased. Since the subbasal nerve vortex was formed at postnatal day 24, its location, morphological appearance, and directionality did not display any further changes with age.

CONCLUSIONS

The changes in the corneal epithelial nerve fibers can be divided into two stages after birth (day 1 to 2 months and 2-15 months). During the first stage, the corneal epithelial nerve fiber density increased significantly with increasing corneal surface area. During the second stage, the density presented a significant downward trend.

摘要

目的

我们定义了小鼠发育过程中角膜上皮神经纤维的定量变化。

方法

用特异性抗β-III 微管蛋白抗体对 36 只小鼠的角膜全片进行免疫染色,以标记神经纤维。使用反卷积显微镜对整个角膜中的上皮神经纤维进行扫描和成像。根据位于角膜表面每 1mm² 区域内的神经纤维长度,计算基底下神经纤维和神经末梢的密度。

结果

上皮神经末梢和角膜表面积的增加速度不同;因此,角膜上皮神经末梢密度和数量的变化不同步。上皮神经末梢密度在出生后第 24 天达到最大值,一直保持到出生后第 2 个月,然后显著下降。然而,上皮神经末梢数量直到出生后第 2 个月才显著增加,然后显著下降。与上皮神经末梢不同,基底下神经纤维密度和数量一直增加到出生后第 2 个月,然后下降。由于基底下神经涡旋在出生后第 24 天形成,其位置、形态外观和方向性随着年龄的增长没有进一步变化。

结论

出生后角膜上皮神经纤维的变化可分为两个阶段(第 1 天至 2 个月和 2-15 个月)。在第一阶段,随着角膜表面积的增加,角膜上皮神经纤维密度显著增加。在第二阶段,密度呈现显著下降趋势。

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