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Microcirculation ; 26(7): e12575, 2019 10.
Article in English | MEDLINE | ID: mdl-31132190

ABSTRACT

HYPOTHESIS: This study tested the hypothesis that dietary activation of the master antioxidant and cell protective transcription factor nuclear factor, erythroid -2-like 2 (NRF2), protects against salt-induced vascular dysfunction by restoring redox homeostasis in the vasculature. METHODS: Male Sprague-Dawley rats and Syrian hamsters were fed a HS (4.0% NaCl) diet containing ~60 mg/kg/day Protandim supplement for 2 weeks and compared to controls fed HS diet alone. RESULTS: Protandim supplementation restoredendothelium-dependent vasodilation in response to acetylcholine (ACh) in middle cerebral arteries (MCA)of HS-fed rats and hamster cheek pouch arterioles, and increased microvessel density in the cremastermuscle of HS-fed rats. The restored dilation to ACh in MCA of Protandim-treated rats was prevented by inhibiting nitric oxide synthase (NOS) with L-NAME [100 µM] and was absent in MCA from Nrf2(-/-) knockout rats fed HS diet. Basilar arteries from HS-fed rats treated with Protandim exhibited significantly lower staining for mitochondrial oxidizing species than untreated animals fed HS diet alone; and Protandim treatment increased MnSOD (SOD2) protein expression in mesenteric arteries of HS-fed rats. CONCLUSIONS: These results suggest that dietary activation of NRF2 protects against salt-induced vascular dysfunction, vascular oxidative stress, and microvascular rarefaction by upregulating antioxidant defenses and reducing mitochondrial ROS levels.


Subject(s)
Drugs, Chinese Herbal/pharmacology , NF-E2-Related Factor 2/metabolism , Sodium Chloride, Dietary/adverse effects , Vascular Diseases , Vasodilation/drug effects , Animals , Arterioles , Gene Expression Regulation, Developmental/drug effects , Male , Mesenteric Arteries/metabolism , Mesenteric Arteries/physiopathology , Mesocricetus , Microcirculation/drug effects , Middle Cerebral Artery/metabolism , Middle Cerebral Artery/physiopathology , Rats , Rats, Sprague-Dawley , Sodium Chloride, Dietary/pharmacology , Superoxide Dismutase/biosynthesis , Vascular Diseases/chemically induced , Vascular Diseases/metabolism , Vascular Diseases/physiopathology
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