In vitro and ex vivo models of microbial keratitis: Present and future

离体 体内 发病机制 免疫系统 角膜炎 疾病 失明 生化工程 生物 神经科学 计算生物学 医学 免疫学 生物技术 病理 工程类 遗传学 验光服务
作者
Kelvin Kah Wai Cheng,Leonie Fingerhut,Sheelagh Duncan,N. Venkatesh Prajna,Adriano G. Rossi,Bethany Mills
出处
期刊:Progress in Retinal and Eye Research [Elsevier BV]
卷期号:102: 101287-101287 被引量:6
标识
DOI:10.1016/j.preteyeres.2024.101287
摘要

Microbial keratitis (MK) is an infection of the cornea, caused by bacteria, fungi, parasites, or viruses. MK leads to significant morbidity, being the fifth leading cause of blindness worldwide. There is an urgent requirement to better understand pathogenesis in order to develop novel diagnostic and therapeutic approaches to improve patient outcomes. Many in vitro, ex vivo and in vivo MK models have been developed and implemented to meet this aim. Here, we present current in vitro and ex vivo MK model systems, examining their varied design, outputs, reporting standards, and strengths and limitations. Major limitations include their relative simplicity and the perceived inability to study the immune response in these MK models, an aspect widely accepted to play a significant role in MK pathogenesis. Consequently, there remains a dependence on in vivo models to study this aspect of MK. However, looking to the future, we draw from the broader field of corneal disease modelling, which utilises, for example, three-dimensional co-culture models and dynamic environments observed in bioreactors and organ-on-a-chip scenarios. These remain unexplored in MK research, but incorporation of these approaches will offer further advances in the field of MK corneal modelling, in particular with the focus of incorporation of immune components which we anticipate will better recapitulate pathogenesis and yield novel findings, therefore contributing to the enhancement of MK outcomes.
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