Endoplasmic reticulum (ER) stress has been implicated in the development of hypertension 3 through the induction of endothelial impairment. As 3′,4′-dihydroxyflavonol (DiOHF) 4 reduces vascular injury caused by ischaemia/reperfusion or diabetes, and flavonols have been demonstrated to attenuate ER stress, we investigated whether DiOHF can protect mice from ER stress-induced endothelial dysfunction. Male C57BLK/6 J mice were injected with tunicamycin to induce ER stress in the presence or absence of either DiOHF or tauroursodeoxycholic acid (TUDCA), an inhibitor of ER stress. Tunicamycin elevated blood pressure and impaired endothelium-dependent relaxation. Moreover, in aortae there was evidence of ER stress, oxidative stress and reduced NO ...
In endothelial cells, the tight control of the redox environment is essential for the maintenance of...
3',4'-Dihydroxyflavonol (DiOHF) is an effective antioxidant that acutely preserves nitric oxide (NO)...
In endothelial cells, the tight control of the redox environment is essential for the maintenance of...
Endoplasmic reticulum (ER) stress has been implicated in the development of hypertension 3 through t...
AbstractBackgroundWe recently reported that ER stress plays a key role in vascular endothelial dysfu...
OBJECTIVE: Cardiac damage and vascular dysfunction are major causes of morbidity and mortality in hy...
<div><p>Endoplasmic reticulum (ER) stress leads to endothelial dysfunction which is commonly associa...
International audienceOBJECTIVE: Cardiac damage and vascular dysfunction are major causes of morbidi...
International audienceOBJECTIVE: Cardiac damage and vascular dysfunction are major causes of morbidi...
Endoplasmic reticulum (ER) stress leads to endothelial dysfunction which is commonly associated in t...
Aims: Diabetes increases oxidant stress and impairs endothelium-dependent relaxation. We investigate...
3',4'-Dihydroxyflavonol (DiOHF) is an effective antioxidant that acutely preserves nitric oxide (NO)...
Endoplasmic reticulum (ER) stress leads to endothelial dysfunction which is commonly associated in t...
Most of diabetic cardiovascular complications are attributed to endothelial dysfunction and impaired...
In endothelial cells, the tight control of the redox environment is essential for the maintenance of...
In endothelial cells, the tight control of the redox environment is essential for the maintenance of...
3',4'-Dihydroxyflavonol (DiOHF) is an effective antioxidant that acutely preserves nitric oxide (NO)...
In endothelial cells, the tight control of the redox environment is essential for the maintenance of...
Endoplasmic reticulum (ER) stress has been implicated in the development of hypertension 3 through t...
AbstractBackgroundWe recently reported that ER stress plays a key role in vascular endothelial dysfu...
OBJECTIVE: Cardiac damage and vascular dysfunction are major causes of morbidity and mortality in hy...
<div><p>Endoplasmic reticulum (ER) stress leads to endothelial dysfunction which is commonly associa...
International audienceOBJECTIVE: Cardiac damage and vascular dysfunction are major causes of morbidi...
International audienceOBJECTIVE: Cardiac damage and vascular dysfunction are major causes of morbidi...
Endoplasmic reticulum (ER) stress leads to endothelial dysfunction which is commonly associated in t...
Aims: Diabetes increases oxidant stress and impairs endothelium-dependent relaxation. We investigate...
3',4'-Dihydroxyflavonol (DiOHF) is an effective antioxidant that acutely preserves nitric oxide (NO)...
Endoplasmic reticulum (ER) stress leads to endothelial dysfunction which is commonly associated in t...
Most of diabetic cardiovascular complications are attributed to endothelial dysfunction and impaired...
In endothelial cells, the tight control of the redox environment is essential for the maintenance of...
In endothelial cells, the tight control of the redox environment is essential for the maintenance of...
3',4'-Dihydroxyflavonol (DiOHF) is an effective antioxidant that acutely preserves nitric oxide (NO)...
In endothelial cells, the tight control of the redox environment is essential for the maintenance of...