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雌激素下降合并铁蓄积对骨组织骨量影响的实验研究 被引量:10

Effect of ferri ion and estradiol on bone mass and bone formation
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摘要 目的探讨单纯雌激素下降和雌激素下降+铁蓄积两种状况下,小鼠骨组织骨量、成骨活性指标、原代成骨细胞代谢指标的差异。方法第一部分:将体重(25+1)g的ICR小鼠按体重区组随机化分组分为3组,每组7只:(1)去势组,模拟绝经状态;(2)高铁去势组,模拟绝经状态合并铁蓄积,该组小鼠采用“去势”后行枸橼酸铁铵腹腔注射;(3)假手术组。12周后检测指标:小鼠体重、血清铁蛋白;胫骨组织的成骨特异性转录因子(Runx2、Osterix)、骨钙蛋白(Bglap)、骨保护素、雌激素受体Or,、13(ER-α、ER-β)基因表达;Micro-CT分析股骨远端骨量差异。第二部分:提取新生ICR小鼠颅骨原代成骨细胞,用枸橼酸铁胺、1713.雌二醇(E2)腹腔注射干预,碱性磷酸酶染色观察成骨细胞形态,定量PCR(q-PCR)检测成骨相关基因表达。结果各组小鼠体重无统计学差异;血清铁蛋白含量:高铁去势组[(324.82±38.60)μg/L]较去势组[(41.38±5.56)μg/L]及假手术组[(39.40±3.81)μg/L]升高,差异有统计学意义(2)Micro-CT的骨密度:高铁去势组[(0.902±0.064)mg/mm^3]及去势组[(0.114±0.013)mg/mm^3]较假手术组[(0.297±0.072)mg/mm^3]均下降,差异有统计学意义,高铁去势组比去势组下降更显著。(3)RT-PCR:与假手术组相比,去势组骨保护素、Runx2、Osterix、Bglap、ER-p表达降低;高铁去势组Osterix、骨保护素表达更低。(4)成骨细胞碱性磷酸酶染色显示用枸橼酸铁胺干预后细胞变小,棕色变淡;q-PCR结果显示:E2升高Bglap表达,枸橼酸铁胺下调Runx2,Osterix表达水平。结论当雌激素去除时,如合并铁增加,则成骨活性指标进一步下调、骨形成进一步受到抑制。 Objective To explore the effect of iron on bone formation with or without estradiol. Methods 8-week old fe- male ICR mice 25±1 g were randomly divided into 3 groups (n=7 each): SHAM group, OVX group and F+OVX group, which were intervened by ferric ammonium citrate (FAC) with a dose of 0.10 g/kg per week. After 8 weeks, the mice of OVX group and F+ OVX group were spayed (with ovariotomy). 12 weeks later, body weight, serum ferritin were measured. The expression changes of Runx2, Osterix, Bglap, OPG, ER-α, ER-β derived from mice tibiae were detected by RT-PCR. A high resolution Micro-CT was used to scan the femur. Primary osteoblasts, extracted from suckling mice' s cranium, were intervened by FAC and estradiol. Har- vested cells after 24 h, then operated alkaline phosphatase staining and q-PCR. Gene expressions of Runx2, osterix and Bglap were measured. Results There were no significant difference between every group in body weight The serum Fer was heightened in F+OVX group (324.82±38.60μg/L) comparing with SHAM group (39.40±3.81 μg/L) and OVX group (41.38±5.56μg/L). The differences were statistically significant among the three groups. BMD of OVX group (0.114±0.013 mg/mm3) was lower than that of SHAM group (0.297±0.072 mg/mm3), but higher than that of F+OVX group (0.902±0.064 mg/mm3), The differences were statisti- cally significant among the three groups. RT-PCR results: The expressions of OPG, Runx2, osterix, Bglap and ER-[3 were de- creased after ovariotomy, while the level of osterix and OPG dropped further with the treatment of FAC. In vitro experiment, results of ALP staining suggested that FAC decrease the level of ALP. Q-PCR showed that the expressions of Runx2, osterix were reduced by FAC, while estradiol increased Bglap expression. Conclusion Iron accumulation might have further result in inhibition of bone formation and suppression of osteogenic activity without estradiol.
出处 《中华骨科杂志》 CAS CSCD 北大核心 2015年第10期1011-1016,共6页 Chinese Journal of Orthopaedics
基金 国家自然科学基金资助项目(81273090,81302438) 江苏省自然科学基金资助项目(BK2012608) 苏州重点实验室基金(SZS201208) 苏州临床重点病种专项(LCZX201305) 苏州科技支撑项目(SS201327)
关键词 雌二醇 骨质疏松 成骨细胞 Estradiol Osteoporosis Osteoblasts
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参考文献17

  • 1Kanis JA, McCloskey EV, Johansson H, et al. European guidance for the diagnosis and management of osteoporosis in postmeno- pausal women[J]. Osteoporos Int, 2013, 24(1): 23-57. 被引量:1
  • 2Kim C, Nan B, Kong S, et al. Changes in iron measures over meno-pause and associations with insulin resistance [J]. J Womens Health (Larchmt), 2012, 21(8): 872-877. 被引量:1
  • 3徐又佳,Huang Xi.铁与性激素关系在骨质疏松性别差异中的影响[J].中华医学杂志,2013,93(48):3809-3811. 被引量:14
  • 4Weinberg ED. Iron loading: a risk factor for osteoporosis[J]. Bio- metals, 2006, 19(6): 633-635. 被引量:1
  • 5He YF, Ma Y, Gao C, et al. Iron overload inhibits osteoblast bio- logical activity through oxidative stress [J]. Biol Trace Elem Res, 2013, 152(2): 292-296. 被引量:1
  • 6Jia P, Xu Y3, Zhang ZL, et al. Ferric ion could facilitate osteoclast differentiation and bone resorption through the production of reac- tive oxygen species[J].J Orthop Res, 2012, 30(11): 1843-1852. 被引量:1
  • 7Mattace Raso G, Irace C, Esposito E, et al. Ovariectomy and estro- gen treatment modulate iron metabolism in rat adipose tissue [J]. Biochem Pharmacol, 2009, 78(8): 100l-1007. 被引量:1
  • 8Kim B J, Ahn SH, Bae SJ, et al. Iron overload accelerates bone loss in healthy postmenopausal women and middle-aged men: a 3- year retrospective longitudinal study [J ]. J Bone Miner Res, 2012, 27(11): 2279-2290. 被引量:1
  • 9Messer JG, Kilbarger AK, Erikson KM, et al. Iron overload alters iron-regulatory genes and proteins, down- regulates osteoblastic phenotype, and is associated with apoptosis in fetal rat calvaria cultures[J].Bone, 2009, 45(5): 972-979. 被引量:1
  • 10Anderson GJ, Frazer DM, McLaren GD. Iron absorption and me- tabolism [J].Curr Opin Gastroenterol, 2009, 25(2): 129-135. 被引量:1

二级参考文献116

  • 1Eckstein F, Matsuura M, Kuhn V, et al. Sex differences of human trabecular bone microstructure in aging are site-dependent. J Bone Miner Res, 2007, 22(6): 817-89-4. 被引量:1
  • 2Homminga J, McCreadie BR, Ciarelli TE, et al. Cancellous bone mechanical properties from normals and patients with hip fractures differ on the structure level, not on the bone hard tissue level. Bone, 2002, 30(5): 759-764. 被引量:1
  • 3Ulrich D. van Rietbergen B, Laib A, et al. The ability of three- dimensional structural indices to reflect mechanical aspects of trabecular hone. Bone, 1999, 25(1): 55-60. 被引量:1
  • 4Hounsfield GN. Computerized transverse axial scanning (tomography). 1. Description of system. Br J Radiol, 1973, 46 (552): 1016-1022. 被引量:1
  • 5Ritman EL. Micro-computed tomography of the lungs and pulmonary-vascular system. Proc Am Thorac Soc, 2005, 2 (6): 477- 480, 501. 被引量:1
  • 6Feldkamp LA, Goldstein SA, Parfitt AM, et al. The direct examination of three-dimensional bone architecture in vitro by computed tomography. J Bone Miner Res, 1989, 4(1): 3-11. 被引量:1
  • 7Goulet RW, Goldstein SA, Ciarelli MJ, et al. The relationship between the structural and orthogonal compressive properties of trabeeular bone. J Biomech, 1994, 27(4): 375-389. 被引量:1
  • 8Ruegsegger P, Koller B, Muller R. A microtomographic system for the nondestructive evaluation of bone architecture. Caleif Tissue Int, 1996, 58(1): 24-29. 被引量:1
  • 9Bonse U, Busch F, Gunnewig O, et al. 3D computed X-ray tomography of human cancellous bone at 8 microns spatial and 104 energy resolution. Bone Miner, 1994, 25(1): 25-38. 被引量:1
  • 10Stauber M, Muller R. Age-related changes in trabecular bone microstructures: global and local morphomet?. Osteoporos Int, 2006, 17(4): 616-626. 被引量:1

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