树松鼠眼睛的组织形态学调查:初步研究

J. Olopade, O. I. Fatola, T. T. Gilbert, O. Folarin, A. A. Obasa, Jude I. Abeje, Munachimso K. Njasi, Ejiro O. Ighorodje, Chizubelu I. Omile, Kehinde I. Adedokun
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引用次数: 0

摘要

松鼠是昼伏夜出的啮齿类动物,视觉敏锐度高,具有适合其自然环境的独特特性。本研究旨在探索尼日利亚伊巴丹伊巴丹大学树栖松鼠的一些眼部显微特征。两只雄性松鼠被关在大学校舍内的笼子里。对从动物身上采集的石蜡包埋眼球样本进行了光学显微镜分析。密实的基质纤维(351 ± 52.5 µm)构成了角膜最厚的部分,角膜上皮基底膜(63.8 ± 13.0 µm)在过期酸性希夫(PAS)染色下呈明显阳性。脉络膜以及虹膜和睫状上皮存在强烈的色素沉着。视网膜结构的多层结构显示,神经节细胞层的神经节细胞密集,该层与神经纤维层一起被观察到,在较外围的部分最薄,但向视盘方向变厚。免疫组化结果显示,视网膜神经纤维层和视神经上的胶质纤维酸性蛋白(GFAP+)细胞呈强阳性,并伴有丰富的纤维过程。因此,所调查的树松鼠视网膜细胞成分的组织学特征凸显了这些动物物种对其树栖环境和昼伏夜出生活方式的结构适应性。这项研究的结果进一步表明,非洲树松鼠的视网膜与人类相似,是人类视网膜/眼科研究的理想啮齿动物模型。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Histomorphological Investigation of the Eye of the Tree Squirrel: A Preliminary Study
Squirrels are diurnal rodents with high visual acuity including unique properties well-suited for their natural environment. This study was conducted to explore some ocular microscopic features of tree-harbouring squirrels in the University of Ibadan, Ibadan, Nigeria. Two male squirrels were cage-trapped within the University premises. Light microscopic analysis was carried on paraffin-embedded eye samples harvested from the animals. The densely compacted stromal fibres, 351 ± 52.5 µm thick, formed the thickest part of the cornea, and the basement membrane of the corneal epithelium, 63.8 ± 13.0 µm thick, was notably positive with Periodic Acid Schiff (PAS) stain. Strong pigmentation was present at the choroid as well as the iridal and ciliary epithelia. The multiple layering of the retinal structure exhibited densely packed ganglion cells at the ganglion cell layer which together with the nerve fibre layer was observed to be thinnest at the more peripheral portion but becomes thicker towards the optic disc. Strongly positive glia fibrillary acidic protein (GFAP+) cells with their abundant fibrous processes were demonstrated immunohistochemically at the retinal nerve fibre layer and the optic nerve. Histological features of the retinal cellular components of the tree squirrels investigated has thus highlighted the structural adaptation of these animal species to their environmental arboreal habitat and diurnal lifestyle. Findings from this study, while further noted to be similar to that in human, showed that African tree squirrels represent promising rodent model for human retinal/ocular research.
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