Propranolol reduces anoxia/reoxygenation-mediated injury of adult myocytes through an anti-radical mechanism.
Propranolol reduces anoxia/reoxygenation-mediated injury of adult myocytes through an anti-radical mechanism.
复制标题
普萘洛尔通过抗自由基机制减少缺氧/复氧介导的成体肌细胞损伤。
DOI:
10.1016/0022-2828(91)90081-v
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发表时间:
1991
影响因子:
5
通讯作者:
Weglicki,WB
中科院分区:
文献类型:
--
作者:
Kramer,JH;Mak,IT;Freedman,AM;Weglicki,WB
The effects of propranolol (PRO) and atenolol (ATE) on adult canine myocytes exposed to 30 min anoxia (A: 95% N 2 5% CO 2) and subsequent reoxygenation (R: 95% O 2 5% CO 2) for up to 20 min was investigated. In some studies, comparison of effects were made with that of superoxide dismutase (SOD). Although anoxia alone produced only minimal injury, reoxygenation in the absence of the β-blockers or SOD was associated with significant losses of cellular viability, elevated release of cellular lactate dehydrogenase, and increased formation of lipid peroxidation products. Myocytes exposed to A R in the presence of d, 1-PRO (20, 200 μ m) were afforded substantial, concentration-dependent protection during 20 min reoxygenation. Significant protection was also observed in the presence of 2 μ m d-PRO (non-active β-blocker), but only after a longer preincubation period (2 h). SOD (10 μg/ml) provided equi-potent protection to that of 200 μ m d, 1-PRO. By contrast, the more water-soluble β-blocker, ATE (200 μ m), offered only minor protection. Electron Spin Resonance spin trapping studies using α-phenyl-tert-butylnitrone (PBN) were also performed with A R myocytes in the presence or absence of drug treatment. Short-term (10 min) exposure to d, 1-PRO (200 μ m) prior to A R, or to SOD, resulted in a 71–84% reduction in total PBN lipid radical adduct formation (alkoxyl; α H= 2.0− 2.5 G, α N= 13.5− 13.75 G); long-term exposure (2 h) to 2 μ m d-PRO resulted in a 51% reduction. These data suggest that the superoxide anion was an initiator of events leading to subsequent lipid radical formation and that the anti-peroxidative properties of PRO appear to be independent of β-receptor blockade.