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铁调素对斑马鱼成骨作用的抑制

Hepcidin inhibition on the effect of osteogenesis in zebrafish.

作者信息

Jiang Yu, Yan Yilin, Wang Xiao, Zhu Guoxing, Xu You-Jia

机构信息

Department of Orthopedics, The Second Affiliated Hospital of Soochow University, 1055 Sanxiang Road, Suzhou 215004, China; Department of Orthopedics, Nanjing Medical University Affiliated Wuxi Second Hospital, Wuxi 214000, China; Osteoporosis Diagnosis and Treatment Technology, Institute of Soochow University, 1055 Sanxiang Road, Suzhou 215004, China.

Institute of Neuroscience, University of Oregon, Eugene, OR, USA.

出版信息

Biochem Biophys Res Commun. 2016 Jul 15;476(1):1-6. doi: 10.1016/j.bbrc.2016.05.118. Epub 2016 May 24.

Abstract

Iron overload, as a risk factor for osteoporosis, can result in the up-regulation of Hepcidin, and Hepcidin knockout mice display defects in their bone microarchitecture. However, the molecular and genetic mechanisms underlying Hepcidin deficiency-derived bone loss remain unclear. Here, we show that hepcidin knockdown in zebrafish using morpholinos leads to iron overload. Furthermore, a mineralization delay is observed in osteoblast cells in hepcidin morphants, and these defects could be partially restored with microinjection of hepcidin mRNA. Quantitative real-time PCR analyses revealed the osteoblast-specific genes alp, runx2a, runx2b, and sp7 in morphants are down-regulated. Furthermore, we confirmed qRT-PCR results by in situ hybridization and found down-regulated genes related to osteoblast function in hepcidin morphants. Most importantly, we revealed that hepcidin was capable of removing whole-body iron which facilitated larval recovery from the reductions in bone formation and osteogenesis induced by iron overload.

摘要

铁过载作为骨质疏松症的一个风险因素,可导致铁调素上调,并且铁调素基因敲除小鼠的骨微结构存在缺陷。然而,铁调素缺乏导致骨质流失的分子和遗传机制仍不清楚。在此,我们表明,使用吗啉代寡核苷酸敲低斑马鱼体内的铁调素会导致铁过载。此外,在铁调素 morphants 的成骨细胞中观察到矿化延迟,并且通过显微注射铁调素 mRNA 可部分恢复这些缺陷。定量实时 PCR 分析显示,morphants 中与成骨细胞特异性相关的基因 alp、runx2a、runx2b 和 sp7 表达下调。此外,我们通过原位杂交证实了 qRT-PCR 结果,并发现铁调素 morphants 中与成骨细胞功能相关的基因表达下调。最重要的是,我们发现铁调素能够清除全身铁,这有助于幼虫从铁过载诱导的骨形成和骨生成减少中恢复。

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