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1 protected from diabetic oxidative stress and vascular endothelial dysfunction.
2 ss with aging and menopause may be linked to vascular endothelial dysfunction.
3 of leukocyte adhesion to the endothelium and vascular endothelial dysfunction.
4     Preeclampsia is characterized by diffuse vascular endothelial dysfunction.
5 ommon link between impaired potentiation and vascular endothelial dysfunction.
6           Short-term exposure to CAP induced vascular endothelial dysfunction.
7 ssue OS and improves 3 different measures of vascular/endothelial dysfunction.
8 c inactivation in mice (Gata5-null) leads to vascular endothelial dysfunction and hypertension.
9                                              Vascular endothelial dysfunction and increased arterial
10 for vascular ER stress and ER stress-induced vascular endothelial dysfunction, and that miR-204 promo
11 may play an important role in initiating the vascular endothelial dysfunction associated with this cl
12  in homocysteine leads to the development of vascular endothelial dysfunction but is not sufficient t
13 ism at Exon 7 (Glu298Asp) has been linked to vascular endothelial dysfunction, but the mechanisms are
14 arginase activity in diabetes contributes to vascular endothelial dysfunction by decreasing L-arginin
15                                              Vascular endothelial dysfunction develops with advancing
16 of large elastic arteries and development of vascular endothelial dysfunction (e.g. impaired endothel
17 adults and recently has been associated with vascular endothelial dysfunction in children.
18 GTP-cyclohydrolase (GTPCH I), a key event in vascular endothelial dysfunction in diabetes.
19 etary sodium restriction (DSR) for improving vascular endothelial dysfunction in middle-aged/older ad
20 targeted antioxidant, MitoQ, in ameliorating vascular endothelial dysfunction in old mice.
21 stress, plays an important role in mediating vascular endothelial dysfunction in overweight and obese
22 epressive symptomatology was associated with vascular endothelial dysfunction in patients with corona
23 h OSA (eg, increased sympathetic activation, vascular endothelial dysfunction, increased oxidative st
24 ather than obesity is a major determinant of vascular endothelial dysfunction, inflammation, and elev
25                                              Vascular endothelial dysfunction may play an important r
26                                              Vascular endothelial dysfunction may predict future athe
27                                  To simulate vascular endothelial dysfunction, N(G)-monomethyl-L-argi
28                                   Peripheral vascular endothelial dysfunction occurs in patients with
29 ers a novel therapeutic intervention for the vascular endothelial dysfunction of gram-negative sepsis
30 reticulum (ER) stress has been implicated in vascular endothelial dysfunction of obesity, diabetes, a
31 Gut microbiota promotes atherosclerosis, and vascular endothelial dysfunction, signalled by impaired
32 ties are due, at least in part, to pulmonary vascular endothelial dysfunction that results in impaire
33                                              Vascular endothelial dysfunction underlies the genesis a
34 litis results in arteriosclerosis by causing vascular endothelial dysfunction was tested in patients
35 acetylase, sirtuin-1 (SIRT-1), contribute to vascular endothelial dysfunction with ageing via modulat
36 ions in SIRT-1 may play an important role in vascular endothelial dysfunction with ageing.
37 r-kappaB (NF-kappaB) activity contributes to vascular endothelial dysfunction with aging and obesity

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