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Are there functional β₃-adrenoceptors in the human heart?
Martin C Michel1, Sian E Harding, Richard A Bond
1Department of Pharmacology & Pharmacotherapy, University of Amsterdam, Amsterdam, The Netherlands. m.c.michel@amc.nl
Insights
The role of beta-3 adrenoceptors in the human heart is unclear, with limited evidence for their function in atria and ventricles. Further research is needed to confirm their physiological effects and potential cardiac implications.
Area of Science:
- Cardiology
- Pharmacology
- Molecular Biology
Background:
- Beta-3 adrenoceptor (β₃-AR) mRNA is found in the human heart, but the receptor protein's presence and function remain debated.
- Existing evidence suggests β₃-ARs may not stimulate cAMP formation or affect atrial contraction in human atria.
Discussion:
- Stimulation of Ca(2+) channels by β₃-AR agonists at room temperature is not observed at physiological temperatures.
- Contraction induced by β₃-AR agonists in human atria often involves β₁- and/or β₂-adrenoceptors, not exclusively β₃-ARs.
Key Insights:
- In human ventricles, β₃-AR agonists may exert negative inotropic effects, potentially via Pertussis toxin-sensitive G-proteins and nitric oxide synthase activation.
- Definitive pharmacological evidence is required to confirm these ventricular effects are mediated specifically by β₃-ARs.
Outlook:
- The clinical use of β₃-AR agonists for bladder dysfunction necessitates further investigation into potential adverse cardiac events.
- Understanding the precise role of cardiac β₃-ARs is crucial for predicting and managing drug safety profiles.
Abstract:
β₃-Adrenoceptor mRNA is expressed in the human heart, but corresponding receptor protein has not yet consistently been demonstrated. Furthermore, their physiological role remains highly controversial. For example, in human atria these receptors apparently do not promote cAMP formation. Evidence presented in this issue of the BJP suggests that a previously reported β₃-adrenoceptor-mediated stimulation of Ca(2+) channels at room temperature is absent at physiological temperatures, and that β₃-adrenoceptors have no effect on atrial contraction. Drugs classified as β₃-adrenoceptor agonists cause contraction in human atria but in most cases this involves β₁- and/or β₂-adrenoceptors. In contrast, in human ventricles β₃-adrenoceptor agonists can exhibit negative inotropic effects, potentially involving Pertussis toxin-sensitive G-proteins and activation of a NO synthase. However, firmer pharmacological evidence is required that these effects indeed occur via β₃-adrenoceptors. Whether the expected future use of β₃-adrenoceptor agonists in the treatment of urinary bladder dysfunction is associated with adverse events related to cardiac function remains to be determined from clinical studies.
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