Heterozygous deficiency of manganese superoxide dismutase in mice (Mn-SOD+/-):: A novel approach to assess the role of oxidative stress for the development of nitrate tolerance

被引:77
作者
Daiber, A
Oelze, M
Sulyok, S
Coldewey, M
Schulz, E
Treiber, N
Hink, U
Mülsch, A
Scharffetter-Kochanek, K
Münzel, T
机构
[1] Univ Mainz Klinikum, Med Klin 2, Lab Mol Kadiol, Verfugungsgebaude Forsch & Entwicklung, D-55101 Mainz, Germany
[2] Univ Ulm, Dept Dermatol & Allergol, Ulm, Germany
[3] Univ Klinikum Hamburg Eppendorf, Med Klin 3, Hamburg, Germany
关键词
D O I
10.1124/mol.105.011585
中图分类号
R9 [药学];
学科分类号
1007 ;
摘要
Nitroglycerin (GTN)-induced tolerance was reported to be associated with increased levels of reactive oxygen species (ROS) in mitochondria. In the present study, we further investigated the role of ROS for the development of nitrate tolerance by using heterozygous manganese superoxide dismutase knockout mice (Mn-SOD+/-). Mn-SOD is acknowledged as a major sink for mitochondrial superoxide. Vasodilator potency of mouse aorta in response to acetylcholine and GTN was assessed by isometric tension studies. Mitochondrial ROS formation was detected by 8-amino-5-chloro-7-phenylpyrido[3,4-d] pyridazine-1,4-(2H,3H) dione sodium salt (L-012)-enhanced chemiluminescence and mitochondrial aldehyde dehydrogenase (ALDH-2) activity was determined by a high-performance liquid chromatography-based assay. Aortic rings from MnSOD+/- mice showed normal endothelial function and vasodilator responses to GTN. In contrast, preincubation of aorta with GTN or long-term GTN infusion caused a marked higher degree of tolerance as well as endothelial dysfunction in Mn-SOD+/- compared with wild type. Basal as well as GTN-stimulated ROS formation was significantly increased in isolated heart mitochondria from Mn-SOD+/- mice, correlating well with a marked decrease in ALDH-2 activity in response to in vitro and in vivo GTN treatment. The data presented indicate that deficiency in Mn-SOD leads to a higher degree of tolerance and endothelial dysfunction associated with increased mitochondrial ROS production in response to in vitro and in vivo GTN challenges. These data further point to a crucial role of ALDH-2 in mediating GTN bioactivation as well as development of GTN tolerance and underline the important contribution of ROS to these processes.
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页码:579 / 588
页数:10
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