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Immune regulation of the ocular surface

Yihe Chen, Shudan Wang, Hamid Alemi +2 more2022Experimental Eye ResearchReview
10.1016/j.exer.2022.109007PubMedFree full text
Immune/InnateOcular

Abstract

Despite constant exposure to various environmental stimuli, the ocular surface remains intact and uninflamed while maintaining the transparency of the cornea and its visual function. This 'immune privilege' of the ocular surface is not simply a result of the physical barrier function of the mucosal lining but, more importantly, is actively maintained through a variety of immunoregulatory mechanisms that prevent the disruption of immune homeostasis. In this review, we focus on essential molecular and cellular players that promote immune quiescence in steady-state conditions and suppress inflammation in disease-states. Specifically, we examine the interactions between the ocular surface and its local draining lymphoid compartment, by encompassing the corneal epithelium, corneal nerves and cornea-resident myeloid cells, conjunctival goblet cells, and regulatory T cells (Treg) in the context of ocular surface autoimmune inflammation (dry eye disease) and alloimmunity (corneal transplantation). A better understanding of the immunoregulatory mechanisms will facilitate the development of novel, targeted immunomodulatory strategies for a broad range of ocular surface inflammatory disorders.

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  • Identification of alpha-melanocyte stimulating hormone as a potential immunosuppressive factor in aqueous humorCurrent Eye Research · 1992
  • Microbial sensing by goblet cells controls immune surveillance of luminal antigens in the colonMucosal Immunology · 2015

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