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Modulation of Isoflavones on Bone—nodule Formation in Rat Calvaria Osteoblasts in vitro
作者姓名:Chang H  Jin TY  Jin WF  Gu SZ  Zhou YF
作者单位:[1]DepartmentofToxicology,SchoolofPublicHealth,FudanUniversity,Shanghai200032,China [2]DivisionofBoneMetaboilismResearch,InstituteofRadiationMedicine,FudanUniversity,Shanghai200032,China
摘    要:Objective:to observe the effects of two main isoflavones,daidzein and genistein on the bone-nodule formation in rat calvaria osteoblasts in vitro.Methods:Osteoblasts obtained from newborn Sprague-dawley rat calvarias were cultured for several generations.The second generation cells were cultured in Minimum Essential Medium supplemenmted with ascorbic acid and Na-beta-glycerophosphate for several days,in the presence of daidzein and genistein,with or without the estrogen receptor antagonist ICI 182780.Number of nodules was counted at the end of the incubation period(day 20) by staining with Alizarin Red S calcium stain.The release of osteocalcin,as a marker of osteoblast activity,was also determined on day 7 and 12 during the incubation period.Results:compared with the control,the numbers of nodules were both increased by incubation with daidzin and genistein,17β-estradiol was used as a positive control and proved to be a more effective inducer of the increase in bone-nodules formation than daidzein and genisterin.The release of osteocalcin into culture media was also increased in the presence of daidzein and genistein,as well as 17β-estradiol on day 7 and day 12(day 12 were higher).The estrogen receptor antagonist ICI 182780 completely blocked the genistein-and 17β0estradiol-induced increase of nodule numbers and osteocalcin release in osteoblasts.Howerver,the effects induced by daidzein could not be inhibited by ICI 182780.Conclusion:These findings suggest that geinistein can stimulate bone-nodule formation and increase the release of osteocalcin in rat osteoblasts.The effects,like those induced by 17β-estradiol,are mediated by the estrogen receptor dependent pathway,Daidzin also can stimulate bone-nodule formation and increase the release of osteocalcin in rat osteoblasts,but it is not,at least not merely,mediated by the estrogen receptor dependent pathway.

关 键 词:骨肿瘤  大豆黄素  木黄酮  骨钙素  成骨细胞

Modulation of isoflavones on bone-nodule formation in rat calvaria osteoblasts in vitro
Chang H,Jin TY,Jin WF,Gu SZ,Zhou YF.Modulation of isoflavones on bone-nodule formation in rat calvaria osteoblasts in vitro[J].Biomedical and Environmental Sciences,2003,16(1):83-89.
Authors:Chang Hao  Jin Tai-Yi  Jin Wei-Fang  Gu Shu-Zhu  Zhou Yuan-Fen
Affiliation:Department of Toxicology, School of Public Health, Fudan University, Shanghai 200032, China. mrchanghao@yahoo.com.cn
Abstract:OBJECTIVE: To observe the effects of two main isoflavones, daidzein and genistein on the bone-nodule formation in rat calvaria osteoblasts in vitro. METHODS: Osteoblasts obtained from newborn Sprague-dawley rat calvaria were cultured for several generations. The second generation cells were cultured in Minimum Essential Medium supplemented with ascorbic acid and Na-beta-glycerophosphate for several days, in the presence of daidzein and genistein, with or without the estrogen receptor antagonist ICI 182780. Number of nodules was counted at the end of the incubation period (day 20) by staining with Alizarin Red S calcium stain. The release of osteocalcin, as a marker of osteoblast activity, was also determined on day 7 and day 12 during the incubation period. RESULTS: Compared with the control, the numbers of nodules were both increased by incubation with daidzein and genistein. 17 beta-estradiol was used as a positive control and proved to be a more effective inducer of the increase in bone-nodules formation that daidzein and genistein. The release of osteocalcin into culture media was also increased in the presence of daidzein and genistein, as well as 17 beta-estradiol on day 7 and day 12 (day 12 were higher). The estrogen receptor antagonist ICI 182780 completely blocked the genistein- and 17 beta-estradiol-induced increase of nodule numbers and osteocalcin release in osteoblasts. However, the effects induced by daidzein could not be inhibited by ICI 182780. CONCLUSION: These findings suggest that geinistein can stimulate bone-nodule formation and increase the release of osteocalcin in rat osteoblasts. The effects, like those induced by 17 beta-estradiol, are mediated by the estrogen receptor dependent pathway. Daidzein also can stimulate bone-nodule formation and increase the release of osteocalcin in rat osteoblasts, but it is not, at least not merely, mediated by the estrogen receptor dependent pathway.
Keywords:Daidzein  Genistein  ICI 182780  Osteocalcin  Bone-nodules  Osteoblast
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