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人角膜上皮愈合的延时记录。

Time-lapse recordings of human corneal epithelial healing.

作者信息

Hardarson Thorir, Hanson Charles, Claesson Margareta, Stenevi Ulf

机构信息

Department of Obstetrics and Gynaecology, Gothenburg University, Gothenburg, Sweden.

出版信息

Acta Ophthalmol Scand. 2004 Apr;82(2):184-8. doi: 10.1111/j.1600-0420.2004.00250.x.

Abstract

PURPOSE

The aim of this study was to design an experimental set-up for the study of human corneal epithelial wound healing in a controlled in vitro situation.

METHODS

A time-lapse set-up was used. This allowed for pictures to be captured with a magnification ranging from x 80 to x 1800. Pictures were captured at 1-min intervals during the observation period, which lasted up to 4 days. Human corneal tissue was obtained from the Eye Bank or from surgery. A small, rounded lesion was produced in the corneal epithelium with a miniature drill. The specimens were placed in a mini-incubator; the camera focused on the epithelial lesion and continuously observed using the time-lapse set-up.

RESULTS

The healing process of human corneal epithelium could be followed for several days. The initial healing response could be divided into a slow, a rapid and a consolidating phase. The first two phases lasted about 12 hours, and by then, epithelial cells covered the lesion. Depending on the origin of the tissue and the placement of the lesion, variations in the healing response could be seen.

CONCLUSION

The time-lapse technique makes it possible to study epithelial wound healing over time at the cellular level. Data collected in this way can fill the gap between in vivo studies, where, by nature, human wound healing studies are restricted, and cell culture techniques, where cellular responses in many cases differ from the in vivo situation.

摘要

目的

本研究的目的是设计一种实验装置,用于在可控的体外环境中研究人角膜上皮伤口愈合。

方法

使用了延时装置。这使得能够以80倍至1800倍的放大倍数拍摄照片。在长达4天的观察期内,每隔1分钟拍摄一次照片。人角膜组织取自眼库或手术。用微型钻头在角膜上皮上制造一个小的圆形损伤。将标本置于微型培养箱中;相机聚焦于上皮损伤处,并使用延时装置持续观察。

结果

人角膜上皮的愈合过程可以持续数天。最初的愈合反应可分为缓慢、快速和巩固阶段。前两个阶段持续约12小时,到那时,上皮细胞覆盖了损伤处。根据组织来源和损伤位置的不同,可以观察到愈合反应的差异。

结论

延时技术使得在细胞水平上随时间研究上皮伤口愈合成为可能。以这种方式收集的数据可以填补体内研究(本质上,人体伤口愈合研究受到限制)和细胞培养技术(在许多情况下,细胞反应与体内情况不同)之间的空白。

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