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Serum-induced keratinization processes in an immortalized human meibomian gland epithelial cell line

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posted on 2024-11-15, 18:21 authored by Ulrike Hampel, Antje Schroeder, Todd MitchellTodd Mitchell, Simon BrownSimon Brown, Peta Snikeris, Fabian Garreis, Carolina M E Kunnen, Mark D P Willcox, Friedrich Paulsen
Purpose The aim of this study was to evaluate a human meibomian gland epithelial cell line (HMGEC) as a model for meibomian gland (patho)physiology in vitro. Methods HMGEC were cultured in the absence or presence of serum. Sudan III lipid staining, ultrastructural analysis and lipidomic analyses were performed. Impedance sensing, desmoplakin 1/2 mRNA and cytokeratin (CK) 1, 5, 6, 14 levels were evaluated. Serum containing medium supplemented with higher serum, glucose, an omega-3 lipid cocktail, eicosapentaenoic acid or sebomed medium were investigated for lipid accumulation and ultrastructural morphology. Results Lipid droplet accumulation in HMGEC was induced by serum containing media after 1 day, but decreased over time. Cultivation in serum induced desmosome and cytokeratin filament formation. Desmoplakin 1/2 gene levels were significantly upregulated after 1d of serum treatment. Furthermore, the normalized impedance increased significantly. Lipidome analysis revealed high levels of phospholipids (over 50%), but very low levels of wax ester and cholesteryl esters (under 1%). Stimulation with eicosapentaenoic acid increased lipid accumulation after one day. Conclusion Serum treatment of HMGEC caused lipid droplet formation to some extent but also induced keratinization. The cells did not produce typical meibum lipids under these growth conditions. HMGEC are well suited to study (hyper)keratinization processes of meibomian gland epithelial cells in vitro.

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Citation

Hampel, U., Schroeder, A., Mitchell, T., Brown, S., Snikeris, P., Garreis, F., Kunnen, C., Willcox, M. & Paulsen, F. (2015). Serum-induced keratinization processes in an immortalized human meibomian gland epithelial cell line. PLoS One, 10 (6), e0128096-1 - e0128096-18.

Journal title

PLoS ONE

Volume

10

Issue

6

Language

English

RIS ID

101560

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