Related Experiment Video
Updated: Jun 23, 2026

Measuring the Rate of Lipolysis in Ex Vivo Murine Adipose Tissue and Primary Preadipocytes Differentiated In Vitro
Published on: March 17, 2023
The beta3-adrenoceptor as a therapeutic target: current perspectives
Maria Grazia Ursino1, Valentina Vasina, Emanuel Raschi
1Department of Pharmacology, University of Bologna, Via Irnerio, 48, I-40126 Bologna, Italy.
Beta(3)-adrenoceptors (beta(3)-ARs) are found in various human tissues, not just fat cells. This review explores their functions and potential as drug targets.
Area of Science:
- Pharmacology
- Cell Biology
- Physiology
Background:
- Beta(3)-adrenoceptors (beta(3)-ARs) are present in diverse human tissues, including adipose tissue, heart, and the urinary bladder.
- Their distribution extends beyond traditional sites, indicating broader physiological roles.
Purpose of the Study:
- To review the functional roles of beta(3)-ARs in various human tissues.
- To discuss the therapeutic potential of targeting beta(3)-ARs for drug development.
Main Methods:
- Literature review of studies on beta(3)-AR distribution and function.
- Analysis of research on drug discovery efforts targeting beta(3)-ARs.
Main Results:
- Beta(3)-ARs are expressed in white and brown adipocytes, heart, gall bladder, gastrointestinal tract, prostate, urinary bladder detrusor, brain, and myometrium.
- Emerging evidence highlights their involvement in physiological processes across these tissues.
Conclusions:
- Beta(3)-ARs represent a promising target for pharmacological intervention.
- Further research into their function and regulation could lead to novel therapeutic strategies.
Related Concept Videos
Adrenergic Antagonists: ɑ and β-Receptor Blockers
Adrenergic Receptors: β Subtype
Isoprenaline > Adrenaline > Noradrenaline
Neurotransmitter binding to these receptors causes activation of adenylyl cyclase resulting in increased concentrations of cAMP and modulation of calcium ion channels within the cell. They are further classified into β1, β2, and β3 subtypes.
β1-adrenoceptors: β1-adrenoceptors have equal affinities for...
Adrenergic Antagonists: Chemistry and Classification of β-Receptor Blockers
Adrenergic Agonists: Therapeutic Uses
Emergency and Intensive Care Unit (ICU) applications: Pressor agents increase blood pressure, heart rate, and contractility in shock and organ failure situations. Dopamine can induce vasodilation and stimulate adrenoceptors. Endogenous catecholamines are effective in treating cardiogenic shock. α2-agonists like clonidine can reverse anesthesia-induced hypertension.
Allergies and anaphylaxis:...
Adrenergic Antagonists: Pharmacological Actions of ɑ-Receptor Blockers
α1-blockers: These drugs inhibit α1-adrenoceptors on smooth muscle cells, resulting in vasodilation. This vasodilation lowers blood pressure, making α1-blockers valuable in treating hypertension. Additionally, α1-blockers effectively address urinary obstruction...
Adrenergic Receptors (Adrenoceptors): Classification
α-Adrenoceptors
α-Adrenoceptors are classified into two main subtypes: α1 and α2. The α1 adrenoceptors, which are found on postsynaptic...