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Dietary iron restriction increases plaque stability in apolipoprotein-e-deficient mice.

作者信息

Lee Hsueh-Te, Chiu Li-Li, Lee Tzong-Shyuan, Tsai Hui-Ling, Chau Lee-Young

机构信息

Institute of Biomedical Sciences, Academia Sinica, Taipei, Taiwan, ROC.

出版信息

J Biomed Sci. 2003 Sep-Oct;10(5):510-7. doi: 10.1007/BF02256112.

DOI:10.1007/BF02256112
PMID:12928591
Abstract

Accumulative evidence has supported the role of iron in the development of atherosclerosis. To test whether iron-mediated oxidative stress influences plaque stability, apoliporotein-E (ApoE)-deficient mice (3 months old) were placed on a chow diet or a low-iron diet for 3 months, and the abundance of interstitial collagen and the expression of the matrix degradation-associated enzyme, matrix metalloproteinase-9 (MMP-9), in vascular lesions were assessed. A low-iron diet appeared to reduce iron deposition while substantially increasing collagen content of lesions in mice. Immunostaining demonstrated lower expression of MMP-9 in lesions of iron-restricted animals. Likewise, SDS-PAGE zymography revealed lower gelatinolytic activities in aortic tissues and sera of the same group of animals. When older ApoE-deficient mice (5 months old) received a low-iron diet for 2 months, development of the lesion area was not significantly affected. However, the lesional collagen content was much higher in the iron-restricted group of animals, and MMP-9 expression in aortic tissues from the same group of mice was significantly lower. Treatment of murine J774 macrophages with increasing concentrations of ferric ammonium citrate significantly enhanced the amount of MMP-9 secreted. Together, these data indicate that decreased vascular iron content following dietary iron restriction in ApoE-deficient mice leads to lower matrix degradation capacity and increased plaque stability.

摘要

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