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Vitamin D and vitamin D receptor in patients with ophthalmic pterygium
Cristina Maxia1, Daniela Murtas, Michela Corrias
1University of Cagliari, Department of Biomedical Sciences. cmaxia@unica.it.
Abstract:
Pterygium, an ultraviolet radiation (UV)-related disease, is a relatively benign process, but since it displays tumor-like features, it has been proposed to be a neoplastic- like growth disorder. Vitamin D performs a number of functions in addition to calcium homeostasis, as inhibition of cell proliferation, activation of apoptotic pathways, and inhibition of angiogenesis. Since the antitumor actions of vitamin D are mediated primarily through the nuclear vitamin D receptor (VDR), the aim of the present study was to investigate vitamin D status in patients with pterygium and in control subjects, and VDR immunohistochemical expression in samples of pterygium and normal conjunctiva in order to evaluate a possible role of vitamin D pathway in the pathogenesis of the disease. Serum vitamin D concentration was measured among 41 patients with pterygium and 47 volunteers by an automated chemiluminescence immunoassay. Moreover, 23 formalin- fixed and paraffin-embedded pterygium biopsy samples and 24 conjunctiva specimens were treated for the immunohistochemical demonstration of VDR using the streptavidin-biotin alkaline phosphatase method. No differences were observed about vitamin D level between patient with pterygium and control group, but significant differences between VDR immunolocalization in pterygium and normal conjunctiva were observed (P=0.00001). In conjunctiva, the immunoreactivity, localized mainly in cytoplasm of epithelial cells, may probably demonstrate VDR regulation of cell growth, differentiation, and apoptosis, while in pterygium VDR co-localization in the nucleus and cytoplasm of epithelial cells may indicate alternative nuclear pathways by which vitamin D might exert its antiinflammatory and anti-proliferative effects by the regulation of gene expression.
Insights
Pterygium patients show no difference in vitamin D levels compared to controls. However, the vitamin D receptor (VDR) is found differently in pterygium tissue, suggesting a role for the vitamin D pathway in pterygium development.
Area of Science:
- Ophthalmology
- Endocrinology
- Molecular Biology
Background:
- Pterygium is an ultraviolet radiation-induced eye condition with tumor-like growth.
- Vitamin D has anti-proliferative and anti-angiogenic properties, mediated by the vitamin D receptor (VDR).
Purpose of the Study:
- To investigate vitamin D status in pterygium patients versus controls.
- To examine VDR expression in pterygium and normal conjunctiva to assess the vitamin D pathway's role in pterygium pathogenesis.
Main Methods:
- Serum vitamin D levels were measured using chemiluminescence immunoassay.
- VDR immunohistochemistry was performed on pterygium and conjunctiva biopsy samples.
Main Results:
- No significant difference in serum vitamin D levels was found between pterygium patients and controls.
- Significant differences in VDR immunolocalization were observed between pterygium and normal conjunctiva (P=0.00001).
- In pterygium, VDR co-localized in the nucleus and cytoplasm, unlike normal conjunctiva where it was mainly cytoplasmic.
Conclusions:
- The vitamin D pathway, particularly VDR localization, may play a role in pterygium pathogenesis.
- Nuclear VDR expression in pterygium suggests vitamin D's anti-inflammatory and anti-proliferative effects through gene expression regulation.
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