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Measurement of Endothelium-Dependent Vasorelaxation in the Mouse Thoracic Aorta Using Tensometric Small Volume Chamber Myography
Published on: August 12, 2022
C21 preserves endothelial function in the thoracic aorta from DIO mice: role for AT2, Mas and B2 receptors
Raquel González-Blázquez1, Martín Alcalá2, María S Fernández-Alfonso3,4
1Departamento de Ciencias Farmacéuticas y de la Salud, Facultad de Farmacia, Universidad San Pablo-CEU, CEU Universities, Madrid 28925, Spain.
Abstract:
Compound 21 (C21), a selective agonist of angiotensin II type 2 receptor (AT2R), induces vasodilation through NO release. Since AT2R seems to be overexpressed in obesity, we hypothesize that C21 prevents the development of obesity-related vascular alterations. The main goal of the present study was to assess the effect of C21 on thoracic aorta endothelial function in a model of diet-induced obesity (DIO) and to elucidate the potential cross-talk among AT2R, Mas receptor (MasR) and/or bradykinin type 2 receptor (B2R) in this response. Five-week-old male C57BL6J mice were fed a standard (CHOW) or a high-fat diet (HF) for 6 weeks and treated daily with C21 (1 mg/kg p.o) or vehicle, generating four groups: CHOW-C, CHOW-C21, HF-C, HF-C21. Vascular reactivity experiments were performed in thoracic aorta rings. Human endothelial cells (HECs; EA.hy926) were used to elucidate the signaling pathways, both at receptor and intracellular levels. Arteries from HF mice exhibited increased contractions to Ang II than CHOW mice, effect that was prevented by C21. PD123177, A779 and HOE-140 (AT2R, Mas and B2R antagonists) significantly enhanced Ang II-induced contractions in CHOW but not in HF-C rings, suggesting a lack of functionality of those receptors in obesity. C21 prevented those alterations and favored the formation of AT2R/MasR and MasR/B2R heterodimers. HF mice also exhibited impaired relaxations to acetylcholine (ACh) due to a reduced NO availability. C21 preserved NO release through PKA/p-eNOS and AKT/p-eNOS signaling pathways. In conclusion, C21 favors the interaction among AT2R, MasR and B2R and prevents the development of obesity-induced endothelial dysfunction by stimulating NO release through PKA/p-eNOS and AKT/p-eNOS signaling pathways.
Insights
Compound 21 (C21) prevents obesity-related vascular dysfunction by improving endothelial function and nitric oxide (NO) release. This study shows C21
Area of Science:
- Cardiovascular Pharmacology
- Endocrinology
- Molecular Biology
Background:
- Obesity is linked to vascular alterations, including endothelial dysfunction.
- Angiotensin II type 2 receptor (AT2R) is overexpressed in obesity, suggesting a potential therapeutic target.
- The role of AT2R, Mas receptor (MasR), and bradykinin type 2 receptor (B2R) in obesity-related vascular changes requires further elucidation.
Purpose of the Study:
- To investigate the effect of Compound 21 (C21) on thoracic aorta endothelial function in diet-induced obesity (DIO).
- To explore the potential cross-talk among AT2R, MasR, and B2R in response to C21 in DIO.
- To determine the signaling pathways involved in C21's protective effects on endothelial function.
Main Methods:
- Diet-induced obesity (DIO) model in C57BL6J mice fed a high-fat (HF) diet for 6 weeks.
- Treatment with C21 (selective AT2R agonist) or vehicle in both standard chow (CHOW) and HF groups.
- Vascular reactivity assessment in thoracic aorta rings and analysis of signaling pathways in human endothelial cells (HECs).
Main Results:
- C21 prevented exaggerated Ang II-induced contractions in HF mice, unlike in CHOW mice.
- Receptor antagonists (PD123177, A779, HOE-140) indicated a lack of AT2R, MasR, and B2R functionality in HF mice.
- C21 preserved acetylcholine-induced relaxations and NO availability in HF mice by activating PKA/p-eNOS and AKT/p-eNOS pathways.
- C21 promoted the formation of AT2R/MasR and MasR/B2R heterodimers.
Conclusions:
- C21 effectively prevents obesity-induced endothelial dysfunction in the thoracic aorta.
- C21's protective effects involve stimulating NO release via PKA/p-eNOS and AKT/p-eNOS signaling.
- C21 facilitates beneficial interactions among AT2R, MasR, and B2R, highlighting a novel therapeutic mechanism.
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