J Korean Assoc Oral Maxillofac Surg.  2007 Dec;33(6):617-624.

Modulation of irradiation-induced cell death by insulin-like growth factor-ii in MC3T3 osteoblasts

Affiliations
  • 1Department of Dentistry, Kosin University Gospel Hospital, Busan, Korea. pkl6801@lycos.co.kr

Abstract

Insulin-like growth factor (IGF) is the most abundant growth factor in bone matrix. Recent studies have shown that it can sensitize apoptotic cell death of osteoblasts. Thus, this study investigated whether IGF-II aggravates irradiation-induced cell death of osteoblasts. Cultured MC3T3 osteoblasts were irradiated and IGF-II was added at the concentration of 50 ng/ml immediately after the irradiation. Cell viability was measured by MTT assay. Changes in cell death and cell cycle were analyzed by flow cytometry. The expression of proapoptotic gene bax and antiapoptotic gene bcl-2 was quantified by real time RT-PCR and Western blot. A dose of 30 Gy caused G2/M arrest and increased cell death through both necrosis and apoptosis, while irradiation from 4 to 10 Gy little affected cell cycle and death. IGF-II treatment reduced cell viability without stimulating cell proliferation and changing cell cycle. Combined treatment of IGFII with irradiation decreased cell viability and proliferation and increased cell death along with G2/M arrest. These effects were not different from those of irradiation only. At transcriptional and protein levels, IGF-II treatment did not affect bax and bcl-2 expression, whereas irradiation increased the expression of bax without changes in bcl-2. IGF-II in combination with irradiation showed similar findings. These results suggest that IGF-II could modulate apoptotic cell death through mechanisms other than an imbalance between bax and bcl-2 gene expression, although its effect was overridden by irradiation.

Keyword

Osteoblast; Irradiation; Insulin-like growth factor; Apoptosis

MeSH Terms

Apoptosis
Blotting, Western
Bone Matrix
Cell Cycle
Cell Death*
Cell Proliferation
Cell Survival
Flow Cytometry
Genes, bcl-2
Insulin-Like Growth Factor II
Necrosis
Osteoblasts*
Insulin-Like Growth Factor II
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