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Updated: Jan 31, 2026

Establishment of A Mouse Model of Aqueous Deficiency Dry Eye
Published on: November 1, 2024
Pax6 downregulation mediates abnormal lineage commitment of the ocular surface epithelium in aqueous-deficient dry
Ying Ting Chen1, Feeling Y T Chen, Trinka Vijmasi
1Francis I. Proctor Foundation, University of California San Francisco, San Francisco, California, United States of America.
Abstract:
Keratinizing squamous metaplasia (SQM) of the ocular surface is a blinding consequence of systemic autoimmune disease and there is no cure. Ocular SQM is traditionally viewed as an adaptive tissue response during chronic keratoconjunctivitis sicca (KCS) that provokes pathological keratinization of the corneal epithelium and fibrosis of the corneal stroma. Recently, we established the autoimmune regulator-knockout (Aire KO) mouse as a model of autoimmune KCS and identified an essential role for autoreactive CD4+ T cells in SQM pathogenesis. In subsequent studies, we noted the down-regulation of paired box gene 6 (Pax6) in both human patients with chronic KCS associated with Sjögren's syndrome and Aire KO mice. Pax6 encodes a pleiotropic transcription factor guiding eye morphogenesis during development. While the postnatal function of Pax6 is largely unknown, we hypothesized that its role in maintaining ocular surface homeostasis was disrupted in the inflamed eye and that loss of Pax6 played a functional role in the initiation and progression of SQM. Adoptive transfer of autoreactive T cells from Aire KO mice to immunodeficient recipients confirmed CD4+ T cells as the principal downstream effectors promoting Pax6 downregulation in Aire KO mice. CD4+ T cells required local signaling via Interleukin-1 receptor (IL-1R1) to provoke Pax6 loss, which prompted a switch from corneal-specific cytokeratin, CK12, to epidermal-specific CK10. The functional role of Pax6 loss in SQM pathogenesis was indicated by the reversal of SQM and restoration of ocular surface homeostasis following forced expression of Pax6 in corneal epithelial cells using adenovirus. Thus, tissue-restricted restoration of Pax6 prevented aberrant epidermal-lineage commitment suggesting adjuvant Pax6 gene therapy may represent a novel therapeutic approach to prevent SQM in patients with chronic inflammatory diseases of the ocular surface.
Insights
Ocular surface squamous metaplasia (SQM) is a blinding condition linked to autoimmune disease. Restoring paired box gene 6 (Pax6) in corneal cells reversed SQM, suggesting gene therapy as a potential treatment.
Area of Science:
- Ophthalmology
- Immunology
- Molecular Biology
Background:
- Keratinizing squamous metaplasia (SQM) causes blindness in autoimmune diseases like Sjögren's syndrome.
- Chronic dry eye (keratoconjunctivitis sicca, KCS) leads to ocular SQM, characterized by corneal epithelium keratinization and stromal fibrosis.
- The autoimmune regulator-knockout (Aire KO) mouse model mimics autoimmune KCS and SQM pathogenesis.
Purpose of the Study:
- Investigate the role of paired box gene 6 (Pax6) in ocular surface homeostasis and SQM development.
- Determine if Pax6 downregulation is a key event in SQM pathogenesis.
- Explore Pax6 gene therapy as a potential treatment for ocular SQM.
Main Methods:
- Established Aire KO mice as a model for autoimmune KCS and SQM.
- Utilized adoptive T cell transfer to identify effector cells and signaling pathways involved in Pax6 downregulation.
- Employed adenovirus-mediated gene delivery for forced Pax6 expression in corneal epithelial cells.
Main Results:
- Autoreactive CD4+ T cells drive Pax6 downregulation in the Aire KO mouse model.
- Interleukin-1 receptor (IL-1R1) signaling is crucial for T cell-mediated Pax6 loss.
- Pax6 loss induces a switch from corneal cytokeratin (CK12) to epidermal cytokeratin (CK10).
- Restoration of Pax6 expression reversed SQM and normalized the ocular surface.
Conclusions:
- Pax6 downregulation is a critical step in the initiation and progression of ocular SQM.
- CD4+ T cell-mediated IL-1R1 signaling disrupts ocular surface homeostasis by reducing Pax6.
- Targeted Pax6 gene therapy offers a promising therapeutic strategy for preventing SQM in chronic inflammatory eye diseases.
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