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Involvement of bone marrow-derived stem and progenitor cells in the pathogenesis of pterygium

Authors
Ye, J.Song, Y.S.Kang, S.H.Yao, K.Kim, J.C.
Issue Date
Aug-2004
Publisher
NATURE PUBLISHING GROUP
Keywords
pterygium; pathogenesis; stem cell; immunohistochemistry
Citation
EYE, v.18, no.8, pp 839 - 843
Pages
5
Journal Title
EYE
Volume
18
Number
8
Start Page
839
End Page
843
URI
https://scholarworks.bwise.kr/cau/handle/2019.sw.cau/65563
DOI
10.1038/sj.eye.6701346
ISSN
0950-222X
1476-5454
Abstract
Aims To evaluate the involvement of multipotential stem and progenitor cells in the pathogenesis of pterygium. Methods Paraffin-embedded and snap-frozen primary pterygium (n = 10) were serially sectioned and analysed immunohistochemically to determine the expression level of AC133 (marker for the primitive haematopoietic progenitors), CD34 (marker for the haematopoietic progenitor cells and endothelium), c-Kit (marker for haematopoietic and stromal progenitor cells), and STRO-1 (a differentiation antigen present on bone marrow fibroblast cells and on various nonhaematopoietic progenitor cells). Results In all the primary pterygium, immunoreactivity of AC133 and STRO-1 was found in some of the epithelial and stromal cells, CD34 was observed in the vascular endothelium, and some scattered ovoidal cells were found in the subepithelial connective tissue. C-Kit was expressed mainly in the basal epithelium of the head portions, and some spindle-shaped stromal cells. There is no immunoreactivity of AC133, c-Kit, and STRO-1 in normal conjunctiva, whereas CD34 was mildly stained with vessel wall. Conclusion Multipotential stem and progenitor cells may be involved in the pathogenesis of pterygium through its differentiation into fibroblasts and vascular endothelial cells.
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