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March 21, 2026International Journal of Molecular Sciences2 citationsOpen Access

Hydrolyzed Collagen from Salmon Skin Mitigates L-NAME-Induced Hypertension in Rats by Attenuating Oxidative Stress and Inflammation and Improving Vascular Remodeling

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PMPimchanok MungmuangJTJiraporn TocharusLPLuckika Panthiya

Key Points

  • The aim is to evaluate the effects of hydrolyzed collagen from salmon skin on hypertension and vascular damage in rats.
  • Induced hypertension in rats using L-NAME at 40 mg/kg/day for eight weeks.
  • Administered hydrolyzed collagen or enalapril for the last four weeks.
  • Measured systolic blood pressure, oxidative stress markers, and inflammatory cytokines.
  • Conducted histopathological analysis of aortic tissue.
  • Hydrolyzed collagen at 450 mg/kg significantly reduced systolic blood pressure.
  • Reduced oxidative stress markers and inflammatory cytokines were observed.
  • Increased production of nitric oxide improved aortic function.
  • Enhanced vascular responses to acetylcholine were noted.

Abstract

This study aimed to investigate whether hydrolyzed collagen (HC) derived from salmon skin could attenuate blood pressure and vascular damage in Nω-nitro-L-arginine methyl ester hydrochloride (L-NAME)-induced hypertensive rats. Hypertension was induced in rats by the oral administration of L-NAME (40 mg/kg/day) for eight weeks, while HC in two doses (50, 450 mg/kg) or enalapril at 10 mg/kg dissolved in water were concurrently administered via oral gavage for the last four weeks. Treatment with HC (450 mg/kg) and enalapril resulted in a reduction in systolic blood pressure, oxidative stress markers, and inflammatory cytokines. Production of serum nitric oxide (NO) was also increased, contributing to better aortic function. Histopathological analysis confirmed these changes, showing enhanced progression in the aorta structure. Vascular function was improved, as evidenced by significantly higher relaxation responses to acetylcholine (ACh) in the presence or absence of endothelium. These findings indicate that HC effectively lowered the blood pressure in hypertensive rats, potentially through mechanisms involving the modulation of oxidative stress and the expression of nitric oxide, reducing vascular inflammation and remodeling, hence enhancing vascular function.

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Cite This Study

Mungmuang et al. (2026) studied this question.

synapsesocial.com/papers/69be371c6e48c4981c6767c6https://doi.org/10.3390/ijms27062805
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