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缺铁性贫血对斑马鱼突变体骨骼形成的影响。

Iron deficiency anemia's effect on bone formation in zebrafish mutant.

作者信息

Bo Lin, Liu Zhichun, Zhong Yingbin, Huang Jian, Chen Bin, Wang Han, Xu Youjia

机构信息

Department of Rheumatology, The Second Affiliated Hospital of Soochow University, Suzhou, 215004 Jiangsu, China.

Center for Circadian Clocks, Soochow University, Suzhou, 215003 Jiangsu, China.

出版信息

Biochem Biophys Res Commun. 2016 Jul 1;475(3):271-6. doi: 10.1016/j.bbrc.2016.05.069. Epub 2016 May 14.

Abstract

Iron is one of the essential elements of life. Iron metabolism is related to bone metabolism. Previous studies have confirmed that iron overload is a risk factor for osteoporosis. But the correlation between iron deficiency and bone metabolism remains unclear. Ferroportin 1 is identified as a cellular iron exporter and required for normal iron cycling. In zebrafish, the mutant of ferroportin 1 gene (fpn1), weh(tp85c) exhibited the defective iron transport, leading to developing severe hypochromic anemia. We used weh(tp85c) as a model for investigating iron deficiency and bone metabolism. In this study, we examined the morphology of the developing cartilage and vertebrae of the Weh(tp85) compared to the wild type siblings by staining the larvae with alcian blue for cartilage and alizarin red for the bone. In addition, we evaluated the expression patterns of the marker genes of bone development and cell signaling in bone formation. Our results showed that weh(tp85c) mutant larvae exhibited the defects in bone formation, revealing by decreases in the number of calcified vertebrae along with decreased expression of osteoblast novel genes: alpl, runx2a and col1a1a and BMPs signaling genes in osteoblast differentiation: bmp2a and bmp2b. Our data suggest that iron deficiency anemia affects bone formation, potentially through the BMPs signaling pathway in zebrafish.

摘要

铁是生命的必需元素之一。铁代谢与骨代谢相关。先前的研究已证实铁过载是骨质疏松症的一个风险因素。但缺铁与骨代谢之间的相关性仍不明确。铁转运蛋白1被确定为一种细胞铁输出蛋白,是正常铁循环所必需的。在斑马鱼中,铁转运蛋白1基因(fpn1)的突变体weh(tp85c)表现出铁转运缺陷,导致严重的低色素性贫血。我们使用weh(tp85c)作为研究缺铁与骨代谢的模型。在本研究中,我们通过用阿尔新蓝对幼虫软骨进行染色、用茜素红对骨骼进行染色,来检查与野生型同胞相比,weh(tp85)发育中的软骨和椎骨的形态。此外,我们评估了骨发育标记基因的表达模式以及骨形成中细胞信号传导情况。我们的结果表明,weh(tp85c)突变体幼虫表现出骨形成缺陷,表现为钙化椎骨数量减少,同时成骨细胞新基因alpl、runx2a和col1a1a的表达降低,以及成骨细胞分化中BMPs信号基因bmp2a和bmp2b的表达降低。我们的数据表明,缺铁性贫血可能通过斑马鱼中的BMPs信号通路影响骨形成。

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