Key result
Aging and ovariectomy significantly reduced flow-induced nitric oxide production and vasodilation in coronary arterioles, which was restored by estrogen replacement through improved superoxide buffering.
Why the study?
Does estrogen replacement restore flow-induced dilation and reactive oxygen species homeostasis in coronary arterioles of aged ovariectomized rats?
Does estrogen replacement restore flow-induced dilation and reactive oxygen species homeostasis in coronary arterioles of aged ovariectomized rats?
p-value: p=<0.05
Estrogen replacement restores superoxide homeostasis and flow-induced dilation in coronary arterioles of aged female rats, highlighting a mechanism for its vascular protective effects.
Supports further investigation of estrogen's microvascular benefits in aging females; does not yet inform clinical practice in postmenopausal women.
Endothelium-dependent, nitric oxide (NO)-mediated vasodilation can be impaired by reactive oxygen species (ROS), and this deleterious effect of ROS on NO availability may increase with aging. Endothelial function declines rapidly after menopause, possibly because of loss of circulating estrogen and its antioxidant effects. The purpose of the current study was to determine the role of O(2)(-) and H(2)O(2) in regulating flow-induced dilation in coronary arterioles of young (6-mo) and aged (24-mo) intact, ovariectomized (OVX), or OVX + estrogen-treated (OVE) female Fischer 344 rats. Both aging and OVX reduced flow-induced NO production, whereas flow-induced H(2)O(2) production was not altered by age or estrogen status. Flow-induced vasodilation was evaluated before and after treatment with the superoxide dismutase (SOD) mimetic Tempol (100 μM) or the H(2)O(2) scavenger catalase (100 U/ml). Removal of H(2)O(2) with catalase reduced flow-induced dilation in all groups, whereas Tempol diminished vasodilation in intact and OVE, but not OVX, rats. Immunoblot analysis revealed elevated nitrotyrosine with aging and OVX. In young rats, OVX reduced SOD protein while OVE increased SOD in aged rats; catalase protein did not differ in any group. Collectively, these studies suggest that O(2)(-) and H(2)O(2) are critical components of flow-induced vasodilation in coronary arterioles from female rats; however, a chronic deficiency of O(2)(-) buffering by SOD contributes to impaired flow-induced dilation with aging and loss of estrogen. Furthermore, these data indicate that estrogen replacement restores O(2)(-) homeostasis and flow-induced dilation of coronary arterioles, even at an advanced age.
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Kang et al. (2011) studied Aging and estrogen deficiency (n=164). Ovariectomy and Estrogen replacement vs. Intact rats was evaluated on Flow-induced vasodilation in coronary arterioles (p=<0.05). Aging and ovariectomy significantly reduced flow-induced nitric oxide production and vasodilation in coronary arterioles, which was restored by estrogen replacement through improved superoxide buffering.
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