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August 6, 2022Vascular Pharmacology34 citationsOpen Access

Empagliflozin prevents angiotensin II-induced hypertension related micro and macrovascular endothelial cell activation and diastolic dysfunction in rats despite persistent hypertension: Role of endothelial SGLT1 and 2

CBC BruckertKMKensuke MatsushitaAMAli Mroueh

Key Result

Empagliflozin attenuated Ang II-induced cardiac diastolic dysfunction, remodeling, and endothelial cell activation in rats despite persistent hypertension.

Structured PICO

Does empagliflozin prevent angiotensin II-induced cardiac and vascular dysfunction in male Wistar rats?

P
Population
Male Wistar rats with angiotensin II-induced hypertension (0.4 mg/kg/day administered via osmotic mini-pumps)
I
Intervention
Empagliflozin 30 mg/kg/day in diet for 5 weeks (started 1 week prior to Ang II administration and continued for 4 weeks)
C
Comparator
Diet without empagliflozin (Ang II alone)
O
Outcome
Systolic blood pressure, cardiac function by echocardiography, and ex vivo cardiac and vascular responses (endothelial cell activation, LV remodeling, and fibrosis)surrogate

Empagliflozin attenuates angiotensin II-induced cardiac diastolic dysfunction, remodeling, and vascular endothelial activation in rats independently of blood pressure lowering.

Abstract

SGLT2 inhibitors (SGLT2i) showed pronounced beneficial effects in patients with heart failure but the underlying mechanisms remain unclear. We evaluated the effect of empagliflozin, selective SGLT2i, on hypertension-induced cardiac and vascular dysfunction. Male Wistar rats received diet with or without empagliflozin (30 mg/kg/day). After 1 week, a hypertensive dose of Ang II (0.4 mg/kg/day) was administered using osmotic mini-pumps for 4 weeks. Systolic blood pressure was determined by sphygmomanometry, the cardiac function by echocardiography and ex vivo (coronary microvascular endothelial cell activation, LV remodeling and fibrosis responses), and the systemic micro and macrovascular endothelial cell activation ex vivo. Empagliflozin treatment did not affect the Ang II-induced hypertensive response. Ang II treatment increased LV mass and induced LV diastolic dysfunction, fibrosis, collagen I and ANP expression, and infiltration of macrophages. In the vasculature, it caused eNOS upregulation in the aorta and down-regulation in mesenteric microvessels associated with increased oxidative stress, ACE, AT1R, VCAM-1, MCP-1, MMP-2, and MMP-9 and collagen I expression, increased endothelial SGLT1 staining in the aorta, mesenteric and coronary microvessels, increased SGLT1 and 2 protein levels in the aorta. All Ang II-induced cardiac and vascular responses were reduced by the empagliflozin treatment. Thus, the SGLT2i effectively attenuated the deleterious impact of Ang II-induced hypertension on target organs including cardiac diastolic dysfunction and remodeling, and endothelial cell activation and pro-atherosclerotic, pro-fibrotic and pro-remodeling responses in macro and microvessels despite persistent hypertension.

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Cite This Study

Bruckert et al. (2022) studied Hypertension-induced cardiac and vascular dysfunction. Empagliflozin vs. Diet without empagliflozin was evaluated on Cardiac function, LV remodeling, fibrosis, and systemic micro and macrovascular endothelial cell activation. Empagliflozin attenuated Ang II-induced cardiac diastolic dysfunction, remodeling, and endothelial cell activation in rats despite persistent hypertension.

synapsesocial.com/papers/6a08e8d834cfc5f8bc5b790ahttps://doi.org/10.1016/j.vph.2022.107095
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