[Corneal epithelial biomechanics: Resistance to stress and role in healing and remodeling]. / Biomécanique de l'épithélium cornéen : résistance au stress et implications dans la cicatrisation et le remodelage.
J Fr Ophtalmol
; 46(3): 287-299, 2023 Mar.
Article
em Fr
| MEDLINE
| ID: mdl-36759249
ABSTRACT
The corneal epithelium is one of the first tissue barriers of the eye against the environment. In recent years, many studies provided better knowledge of its healing, its behavior and its essential role in the optical system of the eye. At the crossroads of basic science and clinical medicine, the study of the mechanical stresses applied to the cornea makes it possible to learn the behavior of epithelial cells and better understand ocular surface disease. We describe herein the current knowledge about the adhesion systems of the corneal epithelium and their resistance to mechanical stress. We will also describe the involvement of these mechanisms in corneal healing and their role in epithelial dynamics. Adhesion molecules of the epithelial cells, especially hemidesmosomes, allow the tissue cohesion required to maintain the integrity of the corneal epithelium against the shearing forces of the eyelids as well as external forces. Their regeneration after a corneal injury is mandatory for the restoration of a healthy epithelium. Mechanotransduction plays a significant role in regulating epithelial cell behavior, and the study of the epithelium's response to mechanical forces helps to better understand the evolution of epithelial profiles after refractive surgery. A better understanding of corneal epithelial biomechanics could also help improve future therapies, particularly in the field of tissue engineering.
Palavras-chave
Texto completo:
1
Base de dados:
MEDLINE
Assunto principal:
Epitélio Corneano
/
Lesões da Córnea
Limite:
Humans
Idioma:
Fr
Ano de publicação:
2023
Tipo de documento:
Article