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THE effect of P2X7 receptor activation on functional responses of human left internal mammary artery
Zeliha Bayram1, Esra Akcabag2, Gul Ozbey2
1Turkish Medicines and Medical Devices Agency, Ankara, Turkey.
Abstract:
The Purinoreceptor 7 (P2X7R) has become a promising drug target in many cardiovascular diseases, including coronary artery disease, since prolonged activation of P2X7R could promote vascular dysfunction, atherosclerosis, and thrombosis. Thus, we aimed to study the effects of P2X7R activation on vascular relaxation responses of the human left internal mammary artery (LIMA). Sections of redundant human LIMA were cut into 3-mm wide rings,, suspended in 20-mL organ baths containing physiologic salt solution, and attached to an isometric force transducer connected to a computer-based data acquisition system. Long-term (60 min) incubation with specific P2X7R agonist Bz-ATP caused significant reductions in relaxation responses of LIMA to ATP and acetylcholine, which were reversed by selective P2X7R antagonists Brilliant Blue G or AZ11645373, whereas there were no changes in relaxation responses to endothelium-independent vasodilators isoprenaline, cAMP analog 8-Br-cAMP, and nitric oxide donor sodium nitroprusside. The impairment in relaxant responses of LIMA to endothelium-dependent vasodilators following activation of P2X7R for the long-term may contribute to postoperative LIMA vasospasm and hypertension. Modulation of P2X7R activity with selective agents may represent a new potential therapeutic approach in patients undergoing coronary artery bypass grafting surgery.
Insights
Activation of the P2X7 receptor (P2X7R) impairs human left internal mammary artery relaxation. This finding suggests P2X7R modulation could prevent vasospasm after coronary artery bypass surgery.
Area of Science:
- Cardiovascular Pharmacology
- Vascular Biology
- Drug Discovery
Background:
- The P2X7 receptor (P2X7R) is implicated in cardiovascular diseases, contributing to vascular dysfunction and thrombosis.
- Targeting P2X7R is a promising strategy for managing conditions like coronary artery disease.
Purpose of the Study:
- To investigate the impact of P2X7R activation on the vascular relaxation of the human left internal mammary artery (LIMA).
- To explore the therapeutic potential of P2X7R modulation in cardiovascular interventions.
Main Methods:
- Human LIMA rings were incubated with the P2X7R agonist Bz-ATP for 60 minutes.
- Vascular relaxation responses to various vasodilators were measured using an isometric force transducer.
- The effects of P2X7R antagonists Brilliant Blue G and AZ11645373 were assessed.
Main Results:
- Long-term P2X7R activation significantly reduced LIMA relaxation to ATP and acetylcholine.
- These inhibitory effects were reversed by selective P2X7R antagonists.
- No changes in relaxation were observed with endothelium-independent vasodilators.
Conclusions:
- P2X7R activation impairs endothelium-dependent vasodilation in human LIMA.
- This impairment may contribute to postoperative LIMA vasospasm and hypertension.
- Targeting P2X7R offers a potential therapeutic avenue for patients undergoing coronary artery bypass grafting.
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