A corneal and whole eye globe bovine ex vivo model to mimic human donor corneal storage conditions and eye surgeries.

IF 1.4 4区 医学 Q4 CELL BIOLOGY
Umberto Rodella, Moreno Piaia, Laura Giurgola, Claudio Gatto, Jana D'Amato Tóthová
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Abstract

Purpose: This study aimed to develop a bovine ex vivoex vivo model to simulate human donor corneal storage conditions and assess the feasibility of human eye surgeries in bovine eye bulbs.

Methods: Calf eye bulbs (n = 19) were obtained from local slaughterhouses. Ten corneas were excised, with five maintained in hypothermic storage (2-8 °C): corneal quality parameters, including endothelial cell (EC) density (ECD), EC mortality and morphology, corneal transparency, and central corneal thickness, were monitored up to 14 days of preservation. Five corneas were assigned to non-vital imaging techniques to investigate cell and nuclei morphology. Human donor corneas (n = 5) in hypothermic storage were assessed as a control group. Nine bovine eye bulbs were used to mimic human eye surgeries, including capsulorhexis and open-sky vitrectomy with inner limiting membrane (ILM) removal, to evaluate their feasibility in the bovine model.

Results: Calf corneal endothelia exhibited a regular mosaic of hexagonal-shaped cells with oval-shaped nuclei and occurrence of binucleated cells. Calf ECD and EC morphology remained stable during the storage, although EC mortality and CCT increased, and corneal transparency and VECD decreased over time. ECD, EC mortality, and CCT were significantly higher in calf than in human corneas, while corneal transparency was lower. ECD change and EC morphology were statistically comparable between the two species. In the whole eye bulb, the narrow horizontal pupil reduced posterior chamber visualization, necessitating an open-sky approach for vitrectomy and ILM removal. Capsulorhexis was performed following complete iridectomy.

Conclusions: The presented bovine model offers a reliable alternative to human donor tissues for preliminary studies on corneal preservation and ophthalmic surgical procedures.

角膜和全眼球牛离体模型,模拟人类供体角膜储存条件和眼部手术。
目的:建立牛离体模型,模拟人类供体角膜的储存条件,并评估用牛眼球进行人眼手术的可行性。方法:小牛眼球19只,取材于当地屠宰场。10个角膜被切除,5个保持低温保存(2-8°C):角膜质量参数,包括内皮细胞(EC)密度(ECD), EC死亡率和形态学,角膜透明度和角膜中央厚度,被监测到保存14天。五个角膜被分配到非生命成像技术来研究细胞和细胞核形态。低温保存的人供体角膜(n = 5)作为对照组。采用9个牛眼球模拟人眼手术,包括撕囊术和开放性玻璃体切除术并去除内限定膜(ILM),以评估其在牛模型中的可行性。结果:犊牛角膜内皮细胞呈六边形、卵形细胞核的有序镶嵌,并可见双核细胞。小牛ECD和EC形态在储存期间保持稳定,尽管EC死亡率和CCT随时间增加,角膜透明度和veecd随时间下降。小牛角膜的ECD、EC死亡率和CCT明显高于人类角膜,而角膜透明度较低。两种间ECD变化和EC形态具有统计学上的可比性。在整个眼球中,狭窄的水平瞳孔降低了后房的可见性,需要开窗入路进行玻璃体切除术和内视光体切除术。完全性虹膜切除术后进行撕囊术。结论:牛模型为角膜保存和眼科手术的初步研究提供了可靠的替代人供体组织的方法。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
Cell and Tissue Banking
Cell and Tissue Banking CELL BIOLOGY-ENGINEERING, BIOMEDICAL
CiteScore
3.10
自引率
13.30%
发文量
68
审稿时长
6-12 weeks
期刊介绍: Cell and Tissue Banking provides a forum for disseminating information to scientists and clinicians involved in the banking and transplantation of cells and tissues. Cell and Tissue Banking is an international, peer-reviewed journal that publishes original papers in the following areas: basic research concerning general aspects of tissue banking such as quality assurance and control of banked cells/tissues, effects of preservation and sterilisation methods on cells/tissues, biotechnology, etc.; clinical applications of banked cells/tissues; standards of practice in procurement, processing, storage and distribution of cells/tissues; ethical issues; medico-legal issues.
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