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Effect of Thyroxine on Transforming Growth Factor β1, Collagen I, and V Expression in Keratoconus Corneal Fibroblasts and Keratocytes, in Vitro
Stachon, T. ✉
;
Omar, Ali M.
;
Latta, L.
;
Huessein, G.H.
;
Mohamed, T.A.
;
Soliman, W.
;
Seitz, B.
;
Szentmáry, N. [Szentmáry, Nóra (Szemészet), szerző] Szemészeti Klinika (SE / AOK / K)
Angol nyelvű Szakcikk (Folyóiratcikk) Tudományos
Megjelent:
CURRENT EYE RESEARCH 0271-3683 1460-2202
47
(2)
pp. 206-213
2022
SJR Scopus - Ophthalmology: Q2
Azonosítók
MTMT: 32166032
DOI:
10.1080/02713683.2021.1967403
WoS:
000685991500001
Scopus:
85112777652
PubMed:
34407700
Background: Keratoconus (KC) is a corneal disorder, associated with oxidative stress, hypoxia and as several times discussed, potentially with thyroid gland dysfunction. We aimed to investigate the effect of thyroxine on transforming growth factor β1 (TGF-β1), collagen I and V (Col I and V) expression in human corneal fibroblasts (HCFs) and human keratocytes of KC corneas, in vitro. Methods: Primary human KC-keratocytes and normal keratocytes were isolated and cultured as corneal fibroblasts or keratocytes. The effect of 0.1 µg/ml and 1.0 µg/ml thyroxine on TGF-β1, Col I and Col V expression was investigated by qPCR, Western blot, and ELISA. Proliferation assay was performed using BrdU ELISA to observe the 24h effect of 1.0 µg/ml thyroxine on keratocytes, in vitro. Results: TGFB1 mRNA expression of normal keratocytes increased following 1.0 µg/ml thyroxine stimulation for 24 h (p = .036), without changes in protein expression. Col I protein expression of KC-HCFs increased following 1.0 µg/ml thyroxine stimulation for 24 h (p = .0003). Proliferation of normal and KC keratocytes increased following a 7-day growth period and 24 hours thyroxine administration (p = .018; p = .024). Conclusions: Thyroxine may affect the Col I protein expression in KC-HCFs, but not in KC keratocytes, in vitro. Thyroxine administration has no effect on TGF-β1, collagen I and V expression of keratoconus keratocytes. Therefore, an increased thyroxine concentration alone seems not to be causally related to the development of keratoconus. © 2021 Taylor & Francis Group, LLC.
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2025-04-04 20:01
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