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Technique of Minimally Invasive Transverse Aortic Constriction in Mice for Induction of Left Ventricular Hypertrophy
Published on: September 25, 2017
Serotonin 5-HT(2B) receptor blockade prevents reactive oxygen species-induced cardiac hypertrophy in mice
Laurent Monassier1, Marc-André Laplante, Fabrice Jaffré
1INSERM U-715, Faculté de Médecine, 11 rue Humann, Strasbourg, France. laurent.monassier@medecine.u-strasbg.fr
Abstract:
We established previously that 5-HT(2B) receptors are involved in cardiac hypertrophy through the regulation of hypertrophic cytokines in cardiac fibroblasts. Moreover, the generation of reactive oxygen species and tumor necrosis factor-alpha through the activation of reduced nicotinamide-adenine dinucleotide phosphate [NAD(P)H] oxidase has been implicated in cardiac hypertrophy. In this study, we investigated whether 5-HT(2B) receptors could be involved in the development of cardiac hypertrophy associated with superoxide anion production. Therefore, we measured the effects of serotonergic 5-HT(2B) receptor blockade on left-ventricular superoxide anion generation in 2 established pharmacological models of cardiac hypertrophy, ie, angiotensin II and isoproterenol infusions in mice. Angiotensin II infusion for 14 days increased superoxide anion concentration (+32%), NAD(P)H oxidase maximal activity (+84%), and p47(phox) NAD(P)H oxidase subunit expression in the left ventricle together with hypertension (+37 mm Hg) and cardiac hypertrophy (+17% for heart weight:body weight). The 5-HT(2B) receptor blockade by a selective antagonist (SB215505) prevented the increase in cardiac superoxide generation and hypertrophy. Similarly, infusion for 5 days of isoproterenol increased left-ventricular NAD(P)H oxidase activity (+48%) and cardiac hypertrophy (+31%) that were prevented by the 5-HT(2B) receptor blockade. Finally, in the primary culture of left-ventricular cardiac fibroblasts, angiotensin II and isoproterenol stimulated NAD(P)H oxidase activity. This activation was prevented by SB215505. These findings suggest that the 5-HT(2B) receptor may represent a new target to reduce cardiac hypertrophy and oxidative stress. Its blockade affects both angiotensin II and beta-adrenergic trophic responses without significant hemodynamic alteration.
Insights
Blocking 5-HT(2B) receptors reduces cardiac hypertrophy and superoxide production. This finding suggests a new therapeutic target for heart conditions involving oxidative stress and angiotensin II or beta-adrenergic stimulation.
Area of Science:
- Cardiology
- Pharmacology
- Molecular Biology
Background:
- 5-HT(2B) receptors regulate hypertrophic cytokines in cardiac fibroblasts.
- Reactive oxygen species and tumor necrosis factor-alpha, via NAD(P)H oxidase, are implicated in cardiac hypertrophy.
Purpose of the Study:
- To investigate the involvement of 5-HT(2B) receptors in cardiac hypertrophy linked to superoxide anion production.
- To assess the effects of 5-HT(2B) receptor blockade on cardiac oxidative stress and hypertrophy.
Main Methods:
- Administered angiotensin II and isoproterenol to mice to induce cardiac hypertrophy.
- Blocked 5-HT(2B) receptors using a selective antagonist (SB215505).
- Measured left-ventricular superoxide anion generation, NAD(P)H oxidase activity, and p47(phox) expression.
Main Results:
- Angiotensin II and isoproterenol infusions increased cardiac superoxide production, NAD(P)H oxidase activity, and hypertrophy.
- 5-HT(2B) receptor blockade with SB215505 prevented these increases in vivo and in vitro.
- Blockade did not cause significant hemodynamic alterations.
Conclusions:
- 5-HT(2B) receptors are involved in cardiac hypertrophy associated with superoxide production.
- Blocking 5-HT(2B) receptors is a potential therapeutic strategy for cardiac hypertrophy and oxidative stress.
- This blockade impacts angiotensin II and beta-adrenergic pathways without adverse hemodynamic effects.

