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使用新一代高分辨率活体共聚焦显微镜对实验动物角膜进行比较解剖学研究。

Comparative anatomy of laboratory animal corneas with a new-generation high-resolution in vivo confocal microscope.

作者信息

Labbé Antoine, Liang Hong, Martin Chantal, Brignole-Baudouin Françoise, Warnet Jean-Michel, Baudouin Christophe

机构信息

Department of Ophthalmology III, Quinze-Vingts National Ophthalmology Hospital, Paris, France.

出版信息

Curr Eye Res. 2006 Jun;31(6):501-9. doi: 10.1080/02713680600701513.

Abstract

PURPOSE

The aim of the current study was to compare the corneas of three commonly used laboratory animals with a new in vivo confocal microscope.

METHODS

Six eyes of three adult male New Zealand albino rabbits, six eyes of three adult male Lewis rats, and six eyes of three adult male Swiss mice were used in this study. Corneas were analyzed in vivo using the Rostock Cornea Module of the Heidelberg Retina Tomograph (HRT)-II. For all eyes, 20 confocal microscopic images of each layer, that is, the superficial and basal corneal epithelia, the Bowman layer, the anterior and posterior stroma, and the endothelium, were recorded. The images were then analyzed qualitatively and compared among animals. Cellular densities of anterior and posterior stroma keratocytes of rabbits and endothelium density of the three different animals were also measured and compared.

RESULTS

The Rostock Cornea Module of the HRT II was successfully used to analyze all corneal layers of these three commonly used laboratory animals. Although the cellular patterns of the corneal layers of these three animals, as observed with in vivo confocal microscopy, were quite similar, some differences were seen in terms of endothelial cell density and stroma appearance. Superficial cells were seen as hyper- and hyporeflective polygonal cells. Basal cells had dark cytoplasm without visible nuclei and were closely organized. A Bowman layer was observed in all three animals as an amorphous tissue containing fine subepithelial nerve plexus. In rabbits, the stroma consisted of an amorphous ground substance with hyper-reflective structures corresponding with keratocyte nuclei. In rats and mice, numerous reflective stellate structures with no clearly visible nuclei were observed within the stroma. Besides endothelial cell density, the endothelium was similar among the three animals and was seen as hyper-reflective cells with dark limits organized in a honeycomb pattern.

CONCLUSIONS

The Rostock Cornea Module of the HRT II can provide high-resolution images of all corneal layers of rabbits, rats, and mice without sacrificing animals or preparing tissue. This new device may be useful for evaluating the cornea during experimental animal studies.

摘要

目的

本研究的目的是使用一种新型活体共聚焦显微镜比较三种常用实验动物的角膜。

方法

本研究使用了三只成年雄性新西兰白化兔的六只眼睛、三只成年雄性刘易斯大鼠的六只眼睛和三只成年雄性瑞士小鼠的六只眼睛。使用海德堡视网膜断层扫描仪(HRT)-II的罗斯托克角膜模块对角膜进行活体分析。对于所有眼睛,记录每层(即角膜上皮浅层和基底细胞层、Bowman层、基质前层和后层以及内皮细胞层)的20张共聚焦显微镜图像。然后对图像进行定性分析并在动物之间进行比较。还测量并比较了兔子基质前层和后层角膜细胞的细胞密度以及三种不同动物的内皮细胞密度。

结果

HRT II的罗斯托克角膜模块成功用于分析这三种常用实验动物的所有角膜层。尽管通过活体共聚焦显微镜观察,这三种动物角膜层的细胞模式非常相似,但在内皮细胞密度和基质外观方面仍存在一些差异。浅层细胞表现为高反射和低反射的多边形细胞。基底细胞的细胞质深色且无可见细胞核,排列紧密。在所有三只动物中均观察到Bowman层为含有精细上皮下神经丛的无定形组织。在兔子中,基质由无定形的基质物质组成,具有与角膜细胞核相对应的高反射结构。在大鼠和小鼠中,在基质内观察到许多无明显可见细胞核的反射性星状结构。除了内皮细胞密度外,三种动物的内皮细胞相似,表现为具有深色边界的高反射细胞,呈蜂窝状排列。

结论

HRT II的罗斯托克角膜模块可以在不牺牲动物或制备组织的情况下提供兔子、大鼠和小鼠所有角膜层的高分辨率图像。这种新设备可能有助于在实验动物研究期间评估角膜。

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