Literature DB >> 24053516

Oral supplementation with the rutin improves cardiovagal baroreflex sensitivity and vascular reactivity in hypertensive rats.

Leônidas das Graças Mendes-Junior1, Matheus Morais de Oliveira Monteiro, Alynne Dos Santos Carvalho, Thyago Moreira de Queiroz, Valdir de Andrade Braga.   

Abstract

The hypothesis that oral supplementation with the flavonoid rutin improves baroreflex sensitivity and vascular reactivity in hypertensive (2-kidney-1-clip (2K1C)) rats was tested. Sixty-four rats were divided in 4 groups: sham + saline; sham + rutin; 2K1C + saline, and 2K1C + rutin. Six weeks after 2K1C surgery, the animals were treated with saline or rutin (40 mg·kg(-1)·day(-1)) by gavage for 7 days. Baroreflex sensitivity test using phenylephrine (8 μg·kg(-1), iv) and sodium nitroprusside (25 μg·kg(-1), iv), vascular reactivity, and thiobarbituric acid reactive substances assay were performed. Baroreflex sensitivity in hypertensive rats was impaired and compared with sham (-2.77 ± 0.15 vs. -1.53 ± 0.27 beats·min(-1)·mm Hg(-1); n = 8; p < 0.05). Oral supplementation with rutin restored baroreflex sensitivity in 2K1C rats (-2.40 ± 0.24 vs. -2.77 ± 0.15 beats·min(-1)·mm Hg(-1); n = 8; p > 0.05). Besides, hypertensive rats have greater contraction to phenylephrine (129.49% ± 4.46% vs. 99.50% ± 11.36%; n = 8; p < 0.05), which was restored by rutin (99.10% ± 1.77% vs. 99.50% ± 11.36%; n = 8; p > 0.05). Furthermore, vasorelaxation to acetylcholine was diminished in hypertensive rats (96.42% ± 2.80% vs. 119.35% ± 5.60%; n = 8; p < 0.05), which was also restored by rutin (117.55% ± 6.94% vs. 119.35% ± 5.60%; n = 8; p > 0.05). Finally, oxidative stress was greater in hypertensive rats (1.54 ± 0.12 vs. 0.53 ± 0.12 nmol MDA·mL(-1); n = 8; p < 0.05) and rutin supplementation significantly decreased oxidative stress in those animals (0.70 ± 0.13 vs. 1.54 ± 0.12 nmol MDA·mL(-1); n = 8; p < 0.05). We concluded that oral supplementation with rutin restores impaired baroreflex sensitivity and vascular reactivity in hypertensive rats by decreasing oxidative stress.

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Year:  2013        PMID: 24053516     DOI: 10.1139/apnm-2013-0091

Source DB:  PubMed          Journal:  Appl Physiol Nutr Metab        ISSN: 1715-5312            Impact factor:   2.665


  7 in total

1.  An up-to-date review of rutin and its biological and pharmacological activities.

Authors:  Naif Abdullah Al-Dhabi; Mariadhas Valan Arasu; Chang Ha Park; Sang Un Park
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2.  The new nitric oxide donor cyclohexane nitrate induces vasorelaxation, hypotension, and antihypertensive effects via NO/cGMP/PKG pathway.

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Journal:  Front Physiol       Date:  2015-08-31       Impact factor: 4.566

Review 3.  New Insights on the Use of Dietary Polyphenols or Probiotics for the Management of Arterial Hypertension.

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Journal:  Front Physiol       Date:  2016-10-06       Impact factor: 4.566

4.  Antioxidant and Antihypertensive Effects of a Chemically Defined Fraction of Syrah Red Wine on Spontaneously Hypertensive Rats.

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Journal:  Nutrients       Date:  2017-06-03       Impact factor: 5.717

Review 5.  The Pharmacological Potential of Rutin.

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6.  A Newly Isolated Carboxymethyl-Glucan (CM-G) Restores Depressed Baroreflex Sensitivity in Renovascular Hypertensive Rats.

Authors:  Alynne Carvalho-Galvão; Danilo D A Gadelha; José L de Brito Alves; Barkat A Khan; Raul J H Castro-Gomez; Josiane C Cruz; Marciane Magnani; Valdir A Braga
Journal:  Front Physiol       Date:  2018-05-23       Impact factor: 4.566

7.  Ethyl Acetate Fraction of Lannea microcarpa Engl. and K. Krause (Anacardiaceae) Trunk Barks Corrects Angiotensin II-Induced Hypertension and Endothelial Dysfunction in Mice.

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Journal:  Oxid Med Cell Longev       Date:  2019-04-28       Impact factor: 6.543

  7 in total

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