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고용량의 Dexamethasone 존재하에서 골막기원세포에서 발현되는 혈관신생인자의 평가Evaluation of angiogenic phenotypes in cultured human periosteal-derived cells underhigh-dose dexamethasone

Other Titles
Evaluation of angiogenic phenotypes in cultured human periosteal-derived cells underhigh-dose dexamethasone
Authors
박봉욱최문정류영모이성균하영술김덕룡조영철김종렬변준호
Issue Date
May-2008
Publisher
대한악안면성형재건외과학회
Keywords
Periosteal-derived cell; High-dose dexamethasone; VEGF; VEGFR; Autocrine growth molecule
Citation
Maxillofacial Plastic and Reconstructive Surgery, v.30, no.3, pp 217 - 224
Pages
8
Indexed
KCI
Journal Title
Maxillofacial Plastic and Reconstructive Surgery
Volume
30
Number
3
Start Page
217
End Page
224
URI
https://scholarworks.gnu.ac.kr/handle/sw.gnu/27980
ISSN
2288-8101
2288-8586
Abstract
Angiogenesis plays an important role in bone development and postnatal bone fracture repair. Vascular endothelial growth factor (VEGF) and vascular endothelial growth factor receptors (VEGFRs) have been thought to be primarily involved in promoting angiogenesis. It is well known that VEGF and its receptors have been reported to play an important role in the regulation of the interaction between angiogenesis and osteogenesis during bone repair processes. Dexamethasone, a potent synthetic glucocorticoid, promotes phenotype markers of osteoblast differentiation, such as ALP and osteocalcin. It stimulates in vitro osteogenesis of human bone marrow osteogenic stromal cells. Dexamethasone has been reported to suppress VEGF gene expression in some cells. However, our previous study demonstrated VEGF quantification increased in a time-dependent manner in periosteal-derived osteogenesis under dexamethasone. So, the purpose of this study was to examine the angiogenic phenotypes in cultured human periostealderived cells under high-dose dexamethasone. Periosteal-derived cells were cultured using a technique previously described. After passage 3, the periosteal-derived cells were further cultured for 28 days in an osteogenic inductive culture medium containing ascorbic acid, β-glycerophosphate and high-dose dexamethasone, We evaluated the expression of VEGF isoforms, VEGFR-1, VEGFR-2, and neuropilin-1. ALL VEGF isoforms (VEGF121, VEGF165, VEGF189, and VEGF206) expression was observed by RT-PCR analysis. VEGFR-1, VEGFR-2 and neuropilin-1 expression increased up to day 14, particularly during the early stage of mineralization. Our results suggest the involvement of direct VEGFs/VEGFRs system on periosteal-derived cells during early mineralization phase under high-dose of dexamethasone. These also suggest that VEGF might act as an autocrine growth molecule during osteoblastic differentiation of cultured human periosteal-derived cells.
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