α1A Adrenoreceptor blockade attenuates myocardial infarction by modulating the integrin-linked kinase/TGF-β/Smad
Nawal M Alrasheed1, Raghad B Alammari2, Tahani K Alshammari1
1Department of Pharmacology and Toxicology, College of Pharmacy , King Saud University, P.O. Box 70474, Riyadh, 11567, Saudi Arabia.
Insights
Tamsulosin, an alpha-1A adrenergic blocker, shows cardioprotective effects against myocardial infarction (MI) by modulating the ILK-related TGF-β/Smad pathway. This study suggests tamsulosin
Area of Science:
- Cardiology
- Pharmacology
- Molecular Biology
Background:
- Myocardial infarction (MI) is a leading global cause of death.
- Alpha-1A adrenergic receptor activation contributes to MI development.
- Tamsulosin, an alpha-1A blocker, is used for benign prostatic hyperplasia and may have cardioprotective effects.
Purpose of the Study:
- To investigate if tamsulosin attenuates MI by modulating the integrin-linked kinase (ILK)-related transforming growth factor-beta (TGF-β)/small mothers against decapentaplegic (Smad) signaling pathway.
- To explore the mechanisms underlying tamsulosin's potential cardioprotective effects in infarcted hearts.
Main Methods:
- Adult male Wistar rats were divided into control, isoproterenol (ISO)-induced MI, tamsulosin (TAM), and ISO + TAM groups.
- Tamsulosin was administered orally for 21 days prior to and during ISO injection to induce MI.
- Cardiac biomarkers, oxidative stress markers, and protein expression of ILK, TGF-β1, p-Smad2/3, and collagen III were assessed.
Main Results:
- Tamsulosin significantly reduced the heart-to-body weight ratio and creatine kinase-MB levels in ISO-induced MI rats.
- Tamsulosin prevented ISO-induced oxidative damage by increasing antioxidant levels (glutathione, superoxide dismutase) and decreasing lipid peroxidation.
- Tamsulosin treatment led to reduced TGF-β/p-Smad2/3 expression and enhanced ILK expression.
Conclusions:
- Tamsulosin demonstrates cardioprotective effects in a rat model of MI.
- These protective effects appear to be mediated through the modulation of the ILK-related TGF-β/Smad signaling pathway.
- Tamsulosin represents a potential therapeutic strategy for preventing myocardial infarction.
Background:
Myocardial infarction (MI) is considered a public health problem. According to the World Health Organization, MI is a leading cause of death and comorbidities worldwide. Activation of the α1A adrenergic receptor is a contributing factor to the development of MI. Tamsulosin, an α1A adrenergic blocker, has gained wide popularity as a medication for the treatment of benign prostatic hyperplasia. Limited evidence from previous studies has revealed the potential cardioprotective effects of tamsulosin, as its inhibitory effect on the α1A adrenoceptor protects the heart by acting on the smooth muscle of blood vessels, which results in hypotension; however, its effect on the infarcted heart is still unclear. The mechanisms of the expected cardioprotective effects mediated by tamsulosin are not yet understood. Transforming growth factor-beta (TGF-β), a mediator of fibrosis, is considered an attractive therapeutic target for remodeling after MI. The role of α1A adrenoceptor inhibition or its relationships with integrin-linked kinase (ILK) and TGF-β/small mothers against decapentaplegic (Smad) signaling pathways in attenuating MI are unclear. The present study was designed to investigate whether tamsulosin attenuates MI by modulating an ILK-related TGF-β/Smad pathway.
Methods:
Twenty-four adult male Wistar rats were randomly divided into 4 groups: control, ISO, TAM, and ISO + TAM. ISO (150 mg/kg, intraperitoneally) was injected on Days 20 and 21 to induce MI. Tamsulosin (0.8 mg/kg, orally) was administered for 21 days, prior to ISO injection for 2 consecutive days. Heart-to-body weight ratios and cardiac and fibrotic biomarker levels were subsequently determined. ILK, TGF-β1, p-Smad2/3, and collagen III protein expression levels were determined using biomolecular methods.
Results:
Tamsulosin significantly attenuated the relative heart-to-body weight index (p < 0.5) and creatine kinase-MB level (p < 0.01) compared with those in the ISO control group. While ISO resulted in superoxide anion production and enhanced oxidative damage, tamsulosin significantly prevented this damage through antioxidant defense mechanisms, increasing glutathione and superoxide dismutase levels (p < 0.05) and decreasing lipid peroxide oxidation levels (p < 0.01). The present data revealed that tamsulosin reduced TGF-β/p-Smad2/3 expression and enhanced ILK expression.
Conclusion:
Tamsulosin may exert a cardioprotective effect by modulating the ILK-related TGF-β/Smad signaling pathway. Thus, tamsulosin may be a useful therapeutic approach for preventing MI.
Related Concept Videos
Intracellular Signaling Affects Focal Adhesions
Some...
Heart Failure Drugs: Inhibitors of Renin-Angiotensin System
Antihypertensive Drugs: Action of β1 Blockers
Adrenergic Antagonists: ɑ and β-Receptor Blockers
Adrenergic Receptors: ɑ Subtype
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...
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,...


