Composition and cardioprotective effects of Primula veris L. solid herbal extract in experimental chronic heart

G M Latypova1, M A Bychenkova1, V A Katayev1

  • 1FSBEE HE Bashkirsky State Medical University, Lenina st., 8, Ufa 540008, Russia.

Insights

Primula veris L. solid herbal extract (PVSHE) demonstrates cardioprotective effects in chronic heart failure (CHF) models. This herbal agent, rich in flavonoids, improves myocardial contractility and reduces CHF markers in experimental animals.

Area of Science:

  • Pharmacology
  • Cardiology
  • Phytochemistry

Background:

  • Chronic heart failure (CHF) presents significant health challenges due to high incidence, poor prognosis, and frequent hospitalizations.
  • Current treatments for CHF are inadequate, necessitating research into novel therapeutic agents.
  • Herbal medicinal products offer a promising alternative due to their therapeutic effects and favorable safety profiles compared to synthetic drugs.

Purpose of the Study:

  • To investigate the chemical composition of Primula veris L. solid herbal extract (PVSHE).
  • To evaluate the effects of PVSHE on myocardial contractile function in an experimental model of CHF.

Main Methods:

  • PVSHE composition was analyzed using chromatography (thin-layer, column, high-performance liquid) and spectroscopy (UV, NMR).
  • Chronic heart failure (CHF) was induced in rats using L-isoproterenol.
  • Cardioprotective effects were assessed by monitoring survival rates, CHF markers (adrenomedullin, copeptin), cardiac output, and left ventricular pressure.

Main Results:

  • PVSHE contains flavonoid aglycons, glycosides, and polymethoxylated flavonoids, including a novel compound isolated from primrose.
  • PVSHE administration (30 mg/kg) significantly reduced animal mortality and CHF markers in the experimental CHF model.
  • The extract enhanced myocardial contractility, increasing left ventricular pressure and the rate of contraction and relaxation.

Conclusions:

  • Primula veris L. solid herbal extract possesses a rich flavonoid profile.
  • PVSHE exhibits significant cardioprotective properties, improving myocardial contractility in experimental chronic heart failure.
Abstract

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