The anti-obesity effect of namodenoson, an A3 adenosine receptor agonist

Pnina Fishman1, Inbal Itzhak2, Rifaat Safadi3

  • 1Can-Fite BioPharma Ltd, Petah-Tikva, Israel. pnina@canfite.co.il.

Insights

Namodenoson, an A3 adenosine receptor agonist, shows potential as a weight-loss drug. Preclinical studies reveal it inhibits adipocyte proliferation and lipid accumulation, supporting further investigation.

Area of Science:

  • Pharmacology
  • Metabolic Diseases
  • Cell Biology

Background:

  • Namodenoson is an A3 adenosine receptor (A3AR) agonist in clinical trials for liver conditions.
  • Its potential as a weight-loss agent is unexplored.

Purpose of the Study:

  • To investigate namodenoson's efficacy as a weight-loss drug candidate.
  • To evaluate its effects on adipocyte function and in diet-induced obesity models.

Main Methods:

  • In vitro studies using 3T3-L1 adipocytes to assess proliferation and lipid accumulation.
  • Western blot analysis to determine molecular targets.
  • In vivo studies using a murine model of diet-induced obesity.

Main Results:

  • Namodenoson dose-dependently inhibited adipocyte proliferation and lipid accumulation in vitro.
  • It downregulated key adipogenic and inflammatory markers (A3AR, PPARγ, C/EBPα, p-AKT, NF-kB) and upregulated adiponectin.
  • In vivo, namodenoson significantly reduced weight gain in high-fat-fed mice but not in lean mice.

Conclusions:

  • Namodenoson demonstrates preclinical efficacy in reducing adiposity.
  • Its mechanism involves modulating adipocyte differentiation and inflammatory pathways.
  • Further research into namodenoson for weight management is warranted.

Related Concept Videos

Adrenergic Antagonists: Pharmacological Actions of ɑ-Receptor Blockers01:22

Adrenergic Antagonists: Pharmacological Actions of ɑ-Receptor Blockers

α-Adrenergic antagonists, known as α-blockers, exert their effects by inhibiting α-adrenoceptors, leading to specific physiological actions. α1-blockers and α2-blockers have distinct pharmacological actions and therapeutic applications.
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,...
1.7K
Adrenergic Agonists: Indirect-Acting Agents01:25

Adrenergic Agonists: Indirect-Acting Agents

Indirect-acting adrenergic agonists potentiate the effects of endogenous catecholamines through different mechanisms without directly binding to adrenoceptors.
One mechanism involves depleting stored catecholamines by displacing them from synaptic vesicles. These agents, known as "displacers," are transported into vesicles at the expense of noradrenaline. Examples include amphetamine and tyramine, which lack a catechol moiety, resulting in prolonged action, improved oral...
2.8K
Adrenergic Agonists: Direct-Acting Agents01:30

Adrenergic Agonists: Direct-Acting Agents

Drugs that mimic the action of endogenous catecholamines like noradrenaline and adrenaline are called adrenergic agonists or sympathomimetics. Based on their mechanism of action, sympathomimetics can be classified as direct-, indirect-, or mixed-acting sympathomimetics. Direct-acting adrenergic agonists activate adrenoceptors without affecting presynaptic neurons, making them independent of neuronal catecholamine-depleting agents like reserpine and guanethidine.
These agents can be classified...
2.9K
Adrenergic Receptors: ɑ Subtype01:31

Adrenergic Receptors: ɑ Subtype

Adrenoceptors are classified into α and ꞵ classes based on their potencies to catecholamine agonists. α-adrenoceptors show the following order of catecholamine potency:
Adrenaline ≥ Noradrenaline >> Isoprenaline
α-adrenoceptors are further divided into α1 and α2-adrenoceptors.
α1-Adrenoceptors: These receptors are located postsynaptically on the effector organs and cause constriction of smooth muscle mediated by activation of phospholipase...
3.0K
Adrenergic Antagonists: Pharmacological Actions of β-Receptor Blockers01:27

Adrenergic Antagonists: Pharmacological Actions of β-Receptor Blockers

β-receptor blockers significantly impact the cardiovascular system by counteracting catecholamine-induced sympathetic responses. These medications decrease heart rate, contractility, and cardiac output, potentially leading to cardiac depression, life-threatening bradycardia, and death. Therapeutically, β-blockers function as mild antihypertensives and are utilized in treating angina pectoris and cardiac arrhythmias. However, nonselective β-blockers inhibit β2-receptors in...
1.8K
Adrenergic Receptors: β Subtype01:26

Adrenergic Receptors: β Subtype

β-adrenoceptors have varied sensitivities towards adrenaline, noradrenaline, and isoprenaline. The order of agonist potency is as follows:
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...
3.9K