Key result
Sacubitril/valsartan increases postprandial glucagon concentrations by ~228% compared to control in healthy men.
Why the study?
Neprilysin inhibitors improve metabolism and may cleave proglucagon-derived peptides, warranting studies to investigate whether neprilysin inhibition increases glucagon levels.
Does neprilysin inhibition with sacubitril/valsartan increase glucagon levels and affect amino acid metabolism in humans and mice?
RCT (n=25)
Open-label (healthy men) and double-blind (obese cohort)
Randomized crossover design (healthy men) and randomized parallel design (obese cohort)
Yes
Does neprilysin inhibition with sacubitril/valsartan increase glucagon levels and affect amino acid metabolism in humans and mice?
Effect estimate: increased by 228%
Absolute Event Rate: 2435% vs 742%
p-value: p=0.02
Neprilysin inhibition increases glucagon levels by preventing its degradation, which may contribute to the metabolic benefits observed with sacubitril/valsartan in heart failure.
Neprilysin inhibition raises postprandial glucagon; extends mechanistic basis for sacubitril/valsartan's metabolic effects in heart failure.
CONTEXT: Inhibitors of the protease neprilysin (NEP) are used for treating heart failure, but are also linked to improvements in metabolism. NEP may cleave proglucagon-derived peptides, including the glucose and amino acid (AA)-regulating hormone glucagon. Studies investigating NEP inhibition on glucagon metabolism are warranted. OBJECTIVE: This work aims to investigate whether NEP inhibition increases glucagon levels. METHODS: Plasma concentrations of glucagon and AAs were measured in eight healthy men during a mixed meal with and without a single dose of the NEP inhibitor/angiotensin II type 1 receptor antagonist, sacubitril/valsartan (194 mg/206 mg). Long-term effects of sacubitril/valsartan (8 weeks) were investigated in individuals with obesity (n = 7). Mass spectrometry was used to investigate NEP-induced glucagon degradation, and the derived glucagon fragments were tested pharmacologically in cells transfected with the glucagon receptor (GCGR). Genetic deletion or pharmacological inhibition of NEP with or without concomitant GCGR antagonism was tested in mice to evaluate effects on AA metabolism. RESULTS: In healthy men, a single dose of sacubitril/valsartan significantly increased postprandial concentrations of glucagon by 228%, concomitantly lowering concentrations of AAs including glucagonotropic AAs. Eight-week sacubitril/valsartan treatment increased fasting glucagon concentrations in individuals with obesity. NEP cleaved glucagon into 5 inactive fragments (in vitro). Pharmacological NEP inhibition protected both exogenous and endogenous glucagon in mice after an AA challenge, while NEP-deficient mice showed elevated fasting and AA-stimulated plasma concentrations of glucagon and urea compared to controls. CONCLUSION: NEP cleaves glucagon, and inhibitors of NEP result in hyperglucagonemia and may increase postprandial AA catabolism without affecting glycemia.
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Kjeldsen et al. (2021) conducted an RCT in Healthy and Obesity with Hypertension (n=25). Sacubitril/valsartan vs. Meal alone (control) or amlodipine 10 mg was evaluated on Postprandial glucagon concentration iAUC (increased by 228%, p=0.02). A single dose of sacubitril/valsartan significantly increased postprandial concentrations of glucagon by 228% (p=0.02) compared to control in healthy men.