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Analysis of the mucosal chemokines CCL28, CXCL14, and CXCL17 in dry eye disease: An in vitro and clinical investigation.

Authors :
Domínguez-López, Alfredo
Blanco-Vázquez, Marta
Calderón-García, Andrés Ángel
García-Vázquez, Carmen
González-García, María J.
Calonge, Margarita
Enríquez-de-Salamanca, Amalia
Source :
Experimental Eye Research. Apr2024, Vol. 241, pN.PAG-N.PAG. 1p.
Publication Year :
2024

Abstract

Mucosal chemokines have antimicrobial properties and play an important role in mucosal immunity. However, little is known about their expression on the ocular surface. This study aimed to analyze the expression of the mucosal chemokines CCL28, CXCL14 and CXCL17 in corneal and conjunctival epithelial cells under in vitro dry eye (DE) conditions, and in conjunctival samples from healthy subjects and DE patients. Human corneal epithelial cells (HCE) and immortalized human conjunctival epithelial cells (IM-HConEpiC) were incubated under hyperosmolar (400–500 mOsM) or inflammatory (TNF-α 25 ng/mL) conditions for 6 h and 24 h to measure CCL28 , CXCL14 , and CXCL17 gene expression by RT-PCR and their secretion by immunobead-based analysis (CCL28, CXCL14) and ELISA (CXCL17). Additionally, twenty-seven DE patients and 13 healthy subjects were included in this study. DE-related questionnaires (OSDI, mSIDEQ and NRS) evaluated symptomatology. Ocular surface integrity was assessed using vital staining. Tactile sensitivity was measured with Cochet-Bonnet esthesiometer, and mechanic and thermal (heat and cold) sensitivity using Belmonte's non-contact esthesiometer. Subbasal nerve plexus and dendritic cell density were analyzed by in vivo confocal microscopy. Conjunctival cells from participants were collected by impression cytology to measure mucosal chemokines gene expression by RT-PCR. Our results showed that HCE and IM-HConEpiC cells increased CCL28, CXCL14, and CXCL17 secretion under hyperosmolar conditions. The gene expression of CCL28 was significantly upregulated in conjunctival samples from DE patients. CCL28 expression correlated positively with symptomatology, corneal staining, heat sensitivity threshold, and dendritic cell density. CXCL14 expression correlated positively with age, ocular pain, conjunctival staining, tactile sensitivity, and image reflectivity. CXCL17 expression correlated positively with corneal staining. These results suggest that corneal and conjunctival epithelial cells could be a source of CCL28, CXCL14, and CXCL17 on the ocular surface and that CCL28 might be involved in DE pathogenesis. • Hyperosmolarity increases CCL28, CXCL14 and CXCL17 secretion in vitro. • First report on CCL28 , CXCL14 and CXCL17 gene expression in healthy human conjunctiva. • Dry eye patients have increased CCL28 gene expression in conjunctival cells. • CCL28 , CXCL14 and CXCL17 levels correlate with clinical severity in dry eye patients. [ABSTRACT FROM AUTHOR]

Details

Language :
English
ISSN :
00144835
Volume :
241
Database :
Academic Search Index
Journal :
Experimental Eye Research
Publication Type :
Academic Journal
Accession number :
176224543
Full Text :
https://doi.org/10.1016/j.exer.2024.109854