ReferenceID 5281

Galangin alleviates vascular dysfunction and remodelling through modulation of the TNF-R1, p-NF-κB and VCAM-1 pathways in hypertensive rats

Life Sci

Galangin is a natural flavonoid isolated from ginger, honey and propolis. AIMS: To investigate the effect of galangin on blood pressure, vascular changes, sympathoexcitation, oxidative stress and inflammation in rats tre

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Reference Id
5281
Evidence Id
21871
Core Evidence Id
21871
Source Reference Id
3824
Herb2 Reference Id
HBREF004621
Subject Paper Key
HBIN027003_34543638
Pubmed Id
34543638
Doi
10.1016/j.lfs.2021.119965
Paper Title
Galangin alleviates vascular dysfunction and remodelling through modulation of the TNF-R1, p-NF-κB and VCAM-1 pathways in hypertensive rats
Paper Abstract
Galangin is a natural flavonoid isolated from ginger, honey and propolis. AIMS: To investigate the effect of galangin on blood pressure, vascular changes, sympathoexcitation, oxidative stress and inflammation in rats treated with NG-nitro-l-arginine methyl ester (l-NAME). MATERIALS AND METHODS: Male Wistar rats (220-250 g) were given l-NAME (0.5 mg/mL in drinking water) to induce hypertension for 5 weeks. They were treated with vehicle, galangin (30 or 60 mg/kg), or amlodipine (10 mg/kg) for the final two weeks (n = 6/group). KEY FINDINGS: Galangin significantly reduced blood pressure and improved the impairment of endothelium-dependent vasodilation in hypertensive rats. Sympathoexcitation, including enhancement of contractile responses to electrical field stimulation, increases in intensity of tyrosine hydroxylase and plasma norepinephrine concentration in hypertensive rats, was attenuated by galangin treatment. Galangin also reduced systemic and vascular oxidative damage and increased plasma nitric oxide levels in the hypertensive groups. Aortic remodelling accompanied by aortic wall hypertrophy and fibrosis observed in hypertensive rats were alleviated by galangin treatment. Furthermore, galangin exhibited an anti-inflammatory effect by suppressing the upregulation of tumour necrosis factor receptor 1 (TNF-R1), phospho-nuclear factor kappa B (p-NF-kappaB) and vascular cell adhesion protein 1 (VCAM-1) in aortic tissue and reducing plasma tumour necrosis factor alpha (TNF-alpha) in l-NAME rats. In conclusion, galangin had antihypertensive effects that were relevant to attenuating endothelial dysfunction, sympathoexcitation and vascular remodelling. These effects might be contributed by antioxidant and anti-inflammatory capacities and modulation of the TNF-R1, p-NF-kappaB and VCAM-1 pathways in hypertensive rats.
Journal
Life Sci
Publish Year
2021
Experiment Subject
rat; ginger
Experiment Type
Animal Experiment
Phenotype Related
Sympathoexcitation; Endothelial Dysfunction; Vascular Remodelling; Aortic Remodelling; Hypertensive; Fibrosis; Tumour; Aortic Wall Hypertrophy; Hypertension
Paper Title Cn
Paper Title En
Galangin alleviates vascular dysfunction and remodelling through modulation of the TNF-R1, p-NF-κB and VCAM-1 pathways in hypertensive rats
Bilingual Status
semi_complete