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Published on: February 17, 2018
Effect of nolomirole on monocrotaline-induced heart failure
Evasio Pasini1, Anna Cargnioni, Fiorella Pastore
1Laboratory of Cardiovascular Physiopathology, Fondazione S. Maugeri, Via Pindololo 23, 25064 Brescia, Gussago, Italy. evpasini@libero.it
Abstract:
Neurohormonal activation has been shown to be a major factor in congestive heart failure progression and mortality. The beneficial effects obtained in clinical trials with angiotensin converting enzyme (ACE) inhibitors, beta-blockers and aldosterone antagonists have confirmed this hypothesis. 5,6-Diisobutirroyloxy-2-methyl-aminotetraline hydrochloride (nolomirole) is a selective agonist of prejunctional D(2)-dopaminergic and alpha(2)-adrenergic receptors. The stimulation of these receptors inhibits catecholamine release from sympathetic nerve endings. To confirm that this mechanism can be useful in congestive heart failure, we studied the effects of nolomirole on monocrotaline-induced congestive heart failure. The ACE inhibitor trandolapril was used as reference compound. Rats were given single intraperitoneal injection of either saline (control group; n=20) or monocrotaline (50 mg kg(-1)). Three days later, the monocrotaline-treated animals were randomly allocated (n=50 per group) to oral treatment with distilled water (vehicle group), nolomirole (0.25 mg kg(-1)) twice a day, or trandolapril (0.3 mg kg(-1)) once a day up to sacrifice. On the fourth week after monocrotaline injection, animals with signs of congestive heart failure were sacrificed for evaluation of heart hypertrophy and neuroendocrine alterations. Atrial natriuretic peptide (ANP) and alderosterone were determined by radioimmunoassay in plasma. Tissue norepinephrine concentration was quantified by high-pressure liquid chromatography. Nolomirole and trandolapril significantly reduced (a) hypertrophy of right atria and ventricles, (b) plasma levels of ANP and presence of pleural/peritoneal effusions and (c) norepinephrine depletion of right ventricle. These findings confirmed that nolomirole, like trandolapril, is able to attenuate the heart failure signs in the monocrotaline-induced congestive heart failure model.
Insights
Nolomirole, a novel drug, effectively reduces heart failure symptoms in rats by inhibiting neurohormonal activation. This study highlights its potential therapeutic benefits for congestive heart failure patients.
Area of Science:
- Cardiology
- Pharmacology
- Neuroendocrinology
Background:
- Neurohormonal activation significantly contributes to congestive heart failure (CHF) progression and mortality.
- Established treatments like ACE inhibitors and beta-blockers target this pathway.
- Nolomirole, a D(2)-dopaminergic and alpha(2)-adrenergic receptor agonist, inhibits sympathetic catecholamine release.
Purpose of the Study:
- To investigate the efficacy of nolomirole in mitigating monocrotaline-induced congestive heart failure in rats.
- To compare nolomirole's effects with the ACE inhibitor trandolapril.
Main Methods:
- Rats were induced with CHF using monocrotaline.
- Treated groups received nolomirole, trandolapril, or vehicle.
- Evaluated heart hypertrophy, plasma atrial natriuretic peptide (ANP), aldosterone, and cardiac norepinephrine levels.
Main Results:
- Nolomirole and trandolapril significantly reduced right heart hypertrophy.
- Both drugs decreased plasma ANP levels and the incidence of effusions.
- Nolomirole and trandolapril attenuated norepinephrine depletion in the right ventricle.
Conclusions:
- Nolomirole demonstrates significant efficacy in attenuating key signs of congestive heart failure in a preclinical model.
- The mechanism involves reducing neurohormonal activation, similar to established therapies.
- Nolomirole presents a promising therapeutic candidate for managing CHF.
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