Influence of Iron on Bone Homeostasis

被引:174
作者
Balogh, Eniko [1 ]
Paragh, Gyorgy [2 ]
Jeney, Viktoria [1 ]
机构
[1] Univ Debrecen, Fac Med, Res Ctr Mol Med, H-4012 Debrecen, Hungary
[2] Univ Debrecen, Fac Med, Dept Internal Med, H-4012 Debrecen, Hungary
关键词
bone homeostasis; iron overload; iron deficiency; osteoclast; osteoblast; osteoporosis; RESISTANT ACID-PHOSPHATASE; SICKLE-CELL-DISEASE; MESENCHYMAL STEM-CELLS; OSTEOCLAST DIFFERENTIATION; THALASSEMIA MAJOR; MINERAL DENSITY; SERUM FERRITIN; BODY IRON; JUVENILE HEMOCHROMATOSIS; GENETIC HEMOCHROMATOSIS;
D O I
10.3390/ph11040107
中图分类号
R914 [药物化学];
学科分类号
100705 [微生物与生化药学];
摘要
Bone homeostasis is a complex process, wherein osteoclasts resorb bone and osteoblasts produce new bone tissue. For the maintenance of skeletal integrity, this sequence has to be tightly regulated and orchestrated. Iron overload as well as iron deficiency disrupt the delicate balance between bone destruction and production, via influencing osteoclast and osteoblast differentiation as well as activity. Iron overload as well as iron deficiency are accompanied by weakened bones, suggesting that balanced bone homeostasis requires optimal-not too low, not too high-iron levels. The goal of this review is to summarize our current knowledge about how imbalanced iron influence skeletal health. Better understanding of this complex process may help the development of novel therapeutic approaches to deal with the pathologic effects of altered iron levels on bone.
引用
收藏
页数:18
相关论文
共 171 条
[61]
Bone mineral density in men with genetic hemochromatosis and HFE gene mutation [J].
Guggenbuhl, P ;
Deugnier, Y ;
Boisdet, JF ;
Rolland, Y ;
Perdriger, A ;
Pawlotsky, Y ;
Chalès, G .
OSTEOPOROSIS INTERNATIONAL, 2005, 16 (12) :1809-1814
[62]
Bone status in a mouse model of genetic hemochromatosis [J].
Guggenbuhl, P. ;
Fergelot, P. ;
Doyard, M. ;
Libouban, H. ;
Roth, M. -P. ;
Gallois, Y. ;
Chales, G. ;
Loreal, O. ;
Chappard, D. .
OSTEOPOROSIS INTERNATIONAL, 2011, 22 (08) :2313-2319
[63]
Iron Chelation Inhibits Osteoclastic Differentiation In Vitro and in Tg2576 Mouse Model of Alzheimer's Disease [J].
Guo, Jun-Peng ;
Pan, Jin-Xiu ;
Xiong, Lei ;
Xia, Wen-Fang ;
Cui, Shun ;
Xiong, Wen-Cheng .
PLOS ONE, 2015, 10 (11)
[64]
Bone remodeling [J].
Hadjidakis, Dimitrios J. ;
Androulakis, Ioannis I. .
WOMEN'S HEALTH AND DISEASE: GYNECOLOGIC, ENDOCRINE, AND REPRODUCTIVE ISSUES, 2006, 1092 :385-396
[65]
Tartrate-resistant acid phosphatase knockout mice [J].
Hayman, AR ;
Cox, TM .
JOURNAL OF BONE AND MINERAL RESEARCH, 2003, 18 (10) :1905-1907
[66]
HAYMAN AR, 1994, J BIOL CHEM, V269, P1294
[67]
PURIFICATION AND CHARACTERIZATION OF A TARTRATE-RESISTANT ACID-PHOSPHATASE FROM HUMAN OSTEOCLASTOMAS [J].
HAYMAN, AR ;
WARBURTON, MJ ;
PRINGLE, JAS ;
COLES, B ;
CHAMBERS, TJ .
BIOCHEMICAL JOURNAL, 1989, 261 (02) :601-609
[68]
Hayrapetyan A, 2015, TISSUE ENG PART B-RE, V21, P75, DOI [10.1089/ten.teb.2014.0119, 10.1089/ten.TEB.2014.0119]
[69]
Two to Tango: Regulation of Mammalian Iron Metabolism [J].
Hentze, Matthias W. ;
Muckenthaler, Martina U. ;
Galy, Bruno ;
Camaschella, Clara .
CELL, 2010, 142 (01) :24-38
[70]
Hofbauer L. C., 2004, Journal of Musculoskeletal & Neuronal Interactions, V4, P268