A Comparison of the Biological Activities of Human Osteoblast hFOB1.19 Between Iron Excess and Iron Deficiency

被引:39
作者
Guo-yang Zhao
Li-ping Zhao
Yin-feng He
Guang-Fei Li
Chao Gao
Kai Li
You-jia Xu
机构
[1] The Second Affiliated Hospital of Soochow University,Department of Orthopaedics
[2] Soochow University,Department of Molecular Diagnostics and Biopharmaceutics, College of Pharmacy
来源
Biological Trace Element Research | 2012年 / 150卷
关键词
Iron ion; Osteoblast; Deferoxamine; Proliferation; Mineralization;
D O I
暂无
中图分类号
学科分类号
摘要
Bone metabolism has a close relationship with iron homeostasis. To examine the effects of iron excess and iron deficiency on the biological activities of osteoblast in vitro, human osteoblast cells (hFOB1.19) were incubated in a medium supplemented with 0–200 μmol/L ferric ammonium citrate and 0–20 μmol/L deferoxamine. The intracellular iron was measured by a confocal laser scanning microscope. Proliferation of osteoblasts was evaluated by 3-(4,5-dimethyl-2-thiazolyl)-2,5-diphenyl-2H-tetrazolium bromide assay. Apoptotic cells were detected using annexin intervention V/PI staining with a flow cytometry. Alkaline phosphatase (ALP) activity was measured using an ALP assay kit. The number of calcified nodules and mineral area was evaluated by von Kossa staining assay. The expressions of type I collagen and osteocalcin of cultured osteoblasts were detected by reverse transcriptase polymerase chain reaction and Western blot. Intracellular reactive oxygen species (ROS) was measured using the oxidation-sensitive dye 2,7-dichlorofluorescin diacetate by flow cytometry. The results indicated that excessive iron inhibited osteoblast activity in a concentration-dependent manner. Low iron concentrations, in contrast, produced a biphasic manner on osteoblasts: mild low iron promoted osteoblast activity, but serious low iron inhibited osteoblast activity. Osteogenesis was optimal in certain iron concentrations. The mechanism underlying biological activity invoked by excessive iron may be attributed to increased intracellular ROS levels.
引用
收藏
页码:487 / 495
页数:8
相关论文
共 188 条
[1]
Anderson GJ(2009)Iron absorption and metabolism Curr Opin Gastroenterol 25 129-135
[2]
Frazer DM(1998)Different degrees of moderate iron deficiency modulate lipid metabolism of rats Lipids 33 889-895
[3]
McLaren GD(2008)Oxidative stress and aging: the potential role of iron Hormones (Athens) 7 114-122
[4]
Stangl GI(2007)Body iron is a contributor to oxidative damage of DNA Free Radic Res 41 324-328
[5]
Kirchgessner M(2009)Iron availability and infection Biochim Biophys Acta 1790 600-605
[6]
Galaris D(2006)Iron loading: a risk factor for osteoporosis Biometals 19 633-635
[7]
Mantzaris M(2008)Role of iron in osteoporosis Pediatr Endocrinol Rev 6 81-85
[8]
Amorgianiotis C(2005)Bone mineral density in men with genetic hemochromatosis and HFE gene mutation Osteoporos Int 16 1809-1814
[9]
Tuomainen T-P(2007)The “lively” cytokines network in beta-thalassemia major-related osteoporosis Bone 40 1588-1594
[10]
Loft S(2007)Bone mass density in adults with sickle cell disease Br J Haematol 136 666-672