The role and treatment of inflammation in dry eye disease

被引:0
作者
Ayse Yagci
Canan Gurdal
机构
[1] Ege University,Faculty of Medicine
[2] Bozok University,Department of Ophthalmology, Faculty of Medicine
来源
International Ophthalmology | 2014年 / 34卷
关键词
Dry eye syndromes; Inflammation; Etiology; Therapy; Cyclosporine A;
D O I
暂无
中图分类号
学科分类号
摘要
Dry eye syndrome is a common ocular surface problem, affects 10–30 % of the population, especially in those who are older than 40 years. As a consequence of the demographic pressure created by the aging population, its prevalence is expected to increase as well as its burden on ophthalmologic practices. Thus, understanding the complex underlying mechanisms and development of thoughtful, effective strategies that involve these mechanisms are critical. Many factors causing ocular surface damage and inflammation have been shown to contribute to the etiopathogenesis. Increased osmolarity induces ocular surface inflammation leading to disruption of both the quality and quantity of tears. Pathologic tear function and the ocular surface inflammation affects the neural arcade and increases apoptosis in the ocular surface cells thus creating a viscous cycle for dry eye by causing unstable and hyperosmolar tears. Thus, the treatment objective is to prevent severe dry eye complications via preventing inflammation and apoptosis of the ocular surface cells. The ultimate target is a normalized ocular surface, increased tear stability, and decreased osmolarity of the tear film. In the light of current literature, this review aims to elucidate the role of inflammation as the main etiological factor in dry eye disease and discuss current therapeutic approaches to overcome it.
引用
收藏
页码:1291 / 1301
页数:10
相关论文
共 295 条
[11]  
Dana R(2010)Novel aspects of corneal angiogenic and lymphangiogenic privilege Prog Retin Eye Res 29 208-248
[12]  
Alves M(2008)Effects of sequential artificial tear and cyclosporine emulsion therapy on conjunctival goblet cell density and transforming growth factor-beta2 production Cornea 27 64-69
[13]  
Fonseca EC(2009)Characterization of effector T cells in dry eye disease Investig Ophthalmol Vis Sci 50 3802-3807
[14]  
Alves MF(2007)Effect of the ocular microenvironment in regulating corneal dendritic cell maturation Arch Ophthalmol 125 908-915
[15]  
Pflugfelder SC(2003)Alteration in corneal stromal dentritic cell phenotype and distribution in inflammation Arch ophtalmol 121 1132-1140
[16]  
Corrales RM(2004)Stimulation of matrix metalloproteinases by hyperosmolarity via a JNK pathway in human corneal epithelial cells Investig Ophthalmol Vis Sci 45 4302-4311
[17]  
de Paiva CS(2009)Tear cytokine profiles in dysfunctional tear syndrome Am J Ophthalmol 147 198-205
[18]  
Stern ME(2010)Tear cytokine and chemokine analysis and clinical correlations in evaporative-type dry eye disease Mol Vis 16 862-873
[19]  
SchaumburgCS Dana R(2011)Interferon-γ secreting NK cells promote induction of dry eye disease J Leukoc Biol 89 965-972
[20]  
Calonge M(2003)Apoptosis of ocular surface cells in experimentally induced dry eye Investig Ophthalmol Vis Sci 44 124-129