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Angiotensin pathways under therapy with empagliflozin in patients with chronic heart failure
Agnes Bosch1, Marko Poglitsch2, Dennis Kannenkeril1
1Department of Nephrology and Hypertension, Friedrich-Alexander-University Erlangen-Nürnberg (FAU), Erlangen, Germany.
Insights
Empagliflozin activates the renin-angiotensin system (RAS) in chronic heart failure patients, particularly those on angiotensin-receptor blockers (ARBs). This activation involves both the vasoconstrictive Angiotensin I-ACE-Angiotensin II axis and the cardioprotective Mas-axis pathway.
Area of Science:
- Cardiology
- Pharmacology
- Endocrinology
Background:
- Chronic heart failure (CHF) patients benefit from treatments reducing hospitalizations and cardiovascular death.
- The renin-angiotensin system (RAS) regulates fluid and sodium balance, with two key axes: the Angiotensin I-ACE-Angiotensin II (vasoconstrictive) axis and the Angiotensin-(1-7)-Mas (cardioprotective) axis.
- Empagliflozin has shown promise in CHF outcomes, but its effect on the RAS requires further elucidation.
Purpose of the Study:
- To investigate the effect of empagliflozin on the renin-angiotensin system (RAS) in patients with chronic heart failure (CHF).
- To analyze whether empagliflozin's impact on RAS parameters differs based on co-medication with angiotensin-receptor blockers (ARBs) or angiotensin-converting-enzyme inhibitors (ACEIs).
Main Methods:
- A post hoc analysis of the randomized placebo-controlled ELSI trial involving 72 CHF patients.
- Measurement of detailed RAS profiles using liquid chromatography-tandem mass spectrometry (LC-MS/MS) after 1 and 3 months of empagliflozin or placebo treatment.
- Comparison of RAS parameters to baseline and subgroup analysis based on ARB or ACEI co-medication.
Main Results:
- Empagliflozin significantly increased levels of Angiotensin II (Ang-II), Angiotensin I (Ang-I), Angiotensin-(1-7), and Angiotensin-(1-5) compared to placebo.
- This empagliflozin-induced RAS activation was observed in patients receiving ARB co-medication, showing significant increases in Ang-II, Ang-(1-7), and Ang-(1-5).
- In contrast, patients on ACEI co-medication with empagliflozin did not show significant changes in these RAS parameters.
Conclusions:
- Empagliflozin may activate both the vasoconstrictive Ang I-ACE-Ang II receptor axis and the cardioprotective Mas-axis pathway in CHF patients.
- This dual activation by empagliflozin was specifically observed in patients co-medicated with ARBs, but not in those co-medicated with ACEIs.
- The findings suggest a differential impact of empagliflozin on the RAS depending on the type of renin-angiotensin system inhibitor used concurrently.
Aims:
Large outcome studies demonstrated a reduction of heart failure hospitalization or cardiovascular death in patients with chronic heart failure (CHF). The renin-angiotensin system (RAS) is a key player in fluid and sodium regulation. The classic angiotensin-converting enzyme-angiotensin II-angiotensin-1 receptor axis (Ang I-ACE-Ang II receptor axis) is predominantly angiotensin II (Ang-II) induced and promotes vasoconstriction. In contrast, the angiotensin-converting-enzyme-2-angiotensin-(1-7)-Mas axis (Mas-axis) is mediated by the metabolites angiotensin-1-7 (Ang-(1-7)) and angtiotensin-1-5 (Ang-(1-5)) and exerts cardioprotective effects.
Methods:
We previously investigated the effect of empagliflozin on the systemic haemodynamic in patients with stable CHF (NYHA II-III) in a randomized placebo-controlled clinical trial 'Analysing the Effect of Empagliflozin on Reduction of Tissue Sodium Content in Patients With Chronic Heart Failure (ELSI)'. In a post hoc analysis, we now analysed whether empagliflozin has an effect on the RAS by measuring detailed RAS profiles (LC-MS/MS-based approach) in 72 patients from ELSI. We compared RAS parameters after 1-month and 3-months treatment with empagliflozin or placebo to baseline. The secondary goal was to analyse whether the effect of empagliflozin on RAS parameters was dependent on angiotensin-receptor-blocking (ARB) or angiotensin-converting-enzyme-inhibitor (ACEI) co-medication.
Results:
Empagliflozin medication induced a significant rise in Ang-II [68.5 pmol/L (21.3-324.2) vs. 131.5 pmol/L (34.9-564.0), P = 0.001], angiotensin-I (Ang-I) [78.7 pmol/L (21.5-236.6) vs. 125.9 pmol/L (52.6-512.9), P < 0.001], Ang-(1-7) [3.0 pmol/L (3.0-15.0) vs. 10.1 pmol/L (3.0-31.3), P = 0.006], and Ang-(1-5) [5.4 pmol/L (2.0-22.9) vs. 9.9 pmol/L (2.8-36.4), P = 0.004], which was not observed in the placebo group (baseline to 3-months treatment). A significant rise in Ang-II (206.4 pmol/L (64.2-750.6) vs. 568.2 pmol/L (164.7-1616.4), P = 0.001), Ang-(1-7) (3.0 pmol/L (3.0-14.1) vs. 15.0 pmol/L (3.0-31.3), P = 0.017), and Ang-(1-5) [12.2 pmol/L (3.8-46.6) vs. 36.4 pmol/L (11.1-90.7), P = 0.001] under empagliflozin treatment was only seen in the subgroup of patients with ARB co-medication, whereas no change of Ang-II (16.7 pmol/L (2.0-60.8) vs. 26.4 pmol/L (10.7-63.4), P = 0.469), Ang-(1-7) (6.6 pmol/L (3.0-20.7) vs. 10.5 pmol/L (3.0-50.5), P = 0.221), and Ang-(1-5) (2.7 pmol/L (2.0-8.4) vs. 2.8 pmol/L (2.0-6.9), P = 0.851) was observed in patients with empagliflozin that were on ACEI co-medication (baseline to 3-months treatment).
Conclusions:
Our data indicate that empagliflozin might lead to an activation of both the Ang I-ACE-Ang II receptor axis and the Mas-axis pathway. Activation of the Ang I-ACE-Ang II receptor axis and the protective Mas-axis pathway after initiating treatment with empagliflozin was only seen in patients with ARB co-medication, in contrast to co-medication with ACEI.
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