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圆锥角膜:交联眼部的“窗户”

Keratoconus: cross-linking the window of the eye.

作者信息

Hayes Sally, Morgan Siân R, Meek Keith M

机构信息

Structural Biophysics Research Group, School of Optometry and Vision Sciences, Cardiff University, Maindy Road, Cardiff, CF24 4HQ. UK.

Structural Biophysics Research Group, School of Optometry and Vision Sciences, Cardiff University, Cardiff, UK.

出版信息

Ther Adv Rare Dis. 2021 Mar 31;2:26330040211003573. doi: 10.1177/26330040211003573. eCollection 2021 Jan-Dec.

Abstract

UNLABELLED

Keratoconus is a condition in which the cornea progressively thins and weakens, leading to severe, irregular astigmatism and a significant reduction in quality of life. Although the precise cause of keratoconus is still not known, biochemical and structural studies indicate that overactive enzymes within the cornea break down the constituent proteins (collagen and proteoglycans) and cause the tissue to weaken. As the disease develops, collagen fibres slip past each other and are redistributed across the cornea, causing it to change shape. In recent years, it was discovered that the photochemical induction of cross-links within the corneal extracellular matrix, through the use of riboflavin and ultraviolet (UVA) light, could increase the strength and enzymatic resistance of the tissue and thereby halt keratoconus progression. Worldwide acceptance and use of riboflavin/UVA corneal cross-linking therapy for halting keratoconus progression has increased rapidly, in accordance with the growing body of evidence supporting its long-term effectiveness. This review focusses on the inception of riboflavin/UVA corneal cross-linking therapy for keratoconus, its clinical effectiveness and the latest scientific advances aimed at reducing patient treatment time, improving patient comfort and increasing patient eligibility for treatment.

PLAIN LANGUAGE SUMMARY

Keratoconus is a disease in which the curved cornea, the transparent window at the front of the eye, weakens, bulges forward into a cone-shape and becomes thinner. This change of curvature means that light is not focussed onto the retina correctly and vision is progressively impaired. Traditionally, the effects of early keratoconus were alleviated by using glasses, specialist contact lenses, rings inserted into the cornea and in severe cases, by performing a corneal transplant. However, it was discovered that by inducing chemical bonds called cross-links within the cornea, the tissue could be strengthened and further thinning and shape changes prevented. The standard cross-linking procedure takes over an hour to perform and involves the removal of the cells at the front of the cornea, followed by the application of Vitamin B2 eye drops and low energy ultraviolet light (UVA) to create new cross-links within the tissue. Clinical trials have shown this standard procedure to be safe and effective at halting keratoconus progression. However, there are many treatment modifications currently under investigation that aim to reduce patient treatment time and increase comfort, such as accelerated cross-linking procedures and protocols that do not require removal of the surface cells. This review describes the different techniques being developed to carry out corneal cross-linking efficiently and painlessly, to halt keratoconus progression and avoid the need for expensive surgery.

摘要

未标注

圆锥角膜是一种角膜逐渐变薄并弱化的病症,会导致严重的不规则散光,并显著降低生活质量。尽管圆锥角膜的确切病因尚不清楚,但生化和结构研究表明,角膜内过度活跃的酶会分解组成蛋白质(胶原蛋白和蛋白聚糖),导致组织弱化。随着病情发展,胶原纤维相互滑动并在整个角膜上重新分布,导致角膜形状改变。近年来,人们发现通过使用核黄素和紫外线(UVA)光在角膜细胞外基质内光化学诱导交联,可以增加组织的强度和酶抗性,从而阻止圆锥角膜的进展。随着越来越多的证据支持核黄素/紫外线角膜交联疗法的长期有效性,该疗法在全球范围内用于阻止圆锥角膜进展的接受度和使用量迅速增加。本综述重点关注核黄素/紫外线角膜交联疗法治疗圆锥角膜的起源、其临床有效性以及旨在减少患者治疗时间、提高患者舒适度并增加患者治疗资格的最新科学进展。

通俗易懂的总结

圆锥角膜是一种疾病,其中眼睛前部的透明窗口——弯曲的角膜会变弱,向前凸出呈圆锥形并变薄。这种曲率变化意味着光线不能正确聚焦在视网膜上,视力会逐渐受损。传统上,早期圆锥角膜的影响通过佩戴眼镜、特殊隐形眼镜、植入角膜的环来缓解,在严重情况下,则通过进行角膜移植来缓解。然而,人们发现通过在角膜内诱导称为交联的化学键,可以增强组织并防止进一步变薄和形状改变。标准的交联程序需要一个多小时才能完成,包括去除角膜前部的细胞,然后滴入维生素B2眼药水并使用低能量紫外线(UVA)在组织内形成新的交联。临床试验表明,这种标准程序在阻止圆锥角膜进展方面是安全有效的。然而,目前正在研究许多治疗改进方法,旨在减少患者治疗时间并提高舒适度,例如加速交联程序和不需要去除表面细胞的方案。本综述描述了正在开发的不同技术,以高效、无痛地进行角膜交联,阻止圆锥角膜进展并避免昂贵的手术。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/59fc/10032441/62ac716a3516/10.1177_26330040211003573-fig1.jpg

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