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首页> 外文期刊>Biological trace element research >Zinc Enhances Bone Metabolism in Ovariectomized Rats and Exerts Anabolic Osteoblastic/Adipocytic Marrow Effects Ex Vivo
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Zinc Enhances Bone Metabolism in Ovariectomized Rats and Exerts Anabolic Osteoblastic/Adipocytic Marrow Effects Ex Vivo

机译:锌增强去卵巢大鼠的骨代谢,并发挥合成代谢成骨细胞/脂肪细胞的骨髓作用

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摘要

Investigations of bone mass and marrow adiposity are critical for defining the role of zinc (Zn) in bone metabolism. Rats used for study were grouped as follows: control (sham), ovariectomy (OVX), ovariectomy + estradiol (OVX-E), ovariectomy + Zn treatment (OVX-Zn). Bone mineral density (BMD) was quantified (microCT); serum osteocalcin, adiponectin, RANKL, and TRAP levels were assayed (ELISA); and biochemical determinations of serum alkaline phosphatase (ALP), calcium (Ca), and phosphorus (P) were done. Cells derived from bone mesenchymal stem cell (BMSC) isolates of respective test groups were compared, identifying primary osteoblasts by MTT assay and adipocytes by Oil Red O stain. Osteocalcin and adiponectin levels in culture supernatants were determined by ELISA. Zn supplementation resulted in a modest increase in BMD, but serum osteocalcin and ALP activity increased significantly (P < 0.01, both). Serum levels of RANKL and TRAP were lower in OVX-Zn (vs OVX) rats (P < 0.01), whereas serum concentrations of adiponectin, Ca, and P did not differ by group. Osteocalcin level was significantly upregulated ex vivo (P < 0.01) in the supernatant of cultured OVX-Zn (vs OVX) cells, accompanied by a slight upturn in osteoblastic differentiation. However, Oil Red O uptake and adiponectin level in supernatant were sharply diminished in cultured OVX-Zn (vs OVX) cells (P < 0.01). Overall, we concluded that Zn contributes to bone mass by marginally stimulating differentiation and proliferation of osteoblasts and by effectively inhibiting osteoclastic and adipocytic differentiation of BMSCs.
机译:骨质和骨髓脂肪的调查对于定义锌(Zn)在骨代谢中的作用至关重要。用于研究的大鼠分组如下:对照(假手术),卵巢切除术(OVX),卵巢切除术+雌二醇(OVX-E),卵巢切除术+锌治疗(OVX-Zn)。定量骨矿物质密度(BMD)(microCT);测定血清骨钙素,脂联素,RANKL和TRAP水平(ELISA);并进行了血清碱性磷酸酶(ALP),钙(Ca)和磷(P)的生化测定。比较了来自各个测试组的骨间充质干细胞(BMSC)分离的细胞,通过MTT分析鉴定了原代成骨细胞,通过油红O染色鉴定了脂肪细胞。通过ELISA测定培养上清液中的骨钙素和脂联素水平。补充锌导致BMD适度增加,但血清骨钙素和ALP活性显着增加(两者均P <0.01)。 OVX-Zn(vs OVX)大鼠的血清RANKL和TRAP含量较低(P <0.01),而脂联素,Ca和P的血清浓度在各组之间没有差异。在培养的OVX-Zn(vs OVX)细胞上清液中,骨钙素水平显着上调(P <0.01),并伴随成骨细胞分化的轻微升高。然而,在培养的OVX-Zn(vs OVX)细胞中,上清中油红O的吸收和脂联素水平急剧降低(P <0.01)。总的来说,我们得出结论,锌通过少量刺激成骨细胞的分化和增殖以及有效抑制BMSC的破骨细胞和脂肪细胞分化而有助于骨量的增加。

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