Antidepressant effect in diabetes-associated depression: A novel potential of RAAS inhibition
PSYCHONEUROENDOCRINOLOGY
Authors: Balogh, Dora B.; Molnar, Agnes; Hosszu, Adam; Lakat, Tamas; Hodrea, Judit; Szabo, Attila J.; Lenart, Lilla; Fekete, Andrea
Abstract
The incidence of depression doubles in diabetic patients and is associated with poor outcomes. Studies indicate that renin-angiotensin-aldosterone system inhibitors (RAASi) might relieve depression, however the mechanism of action is not well understood. We recently showed that angiotensin receptor blockers have antidepressant effects in experimental diabetes comorbid depression. Here we investigated whether all types of RAASi exhibit antidepressant and neuroprotective properties. Diabetes was induced by streptozotocin in adult male Wistar rats. After 5 weeks of diabetes, rats were treated per os with non-pressor doses of enalapril, ramipril, spironolactone or eplerenone for 2 weeks. Behavior was evaluated using forced swim test and open field test. Inflammatory response and brain-derived neurotrophic factor (BDNF) signaling were investigated in the hippocampus. Both ACEi and MR antagonists reversed diabetes-induced behavioral despair confirming their antidepressant-like effect. This may occur via alterations in hippocampal cytokine-mediated inflammatory response. Repressed BDNF production was restored by RAASi. Both ACEi and MR antagonists facilitated the BDNF-tropomyosin receptor kinase B-cAMP response element-binding protein signaling pathway as part of their neuroprotective effect. These data highlight the important benefits of ACEi and MR antagonists in the treatment of diabetes-associated depressive symptoms. Our novel findings support the link between diabetes comorbid depression, inflammation and repressed BDNF signaling. RAASi could provide new therapeutic options to improve the outcomes of both disorders.
Angiotensin converting enzyme 2 and angiotensin (1-7) axis in pulmonary arterial hypertension
EUROPEAN RESPIRATORY JOURNAL
Authors: Sandoval, Julio; Del Valle-Mondragon, Leonardo; Masso, Felipe; Zayas, Nayeli; Pulido, Tomas; Teijeiro, Ricardo; Gonzalez-Pacheco, Hector; Olmedo-Ocampo, Rossana; Sisniega, Carlos; Paez-Arenas, Araceli; Pastelin-Hernandez, Gustavo; Gomez-Arroyo, Jose; Voelkel, Norbert F.
Abstract
Background: In animal models of pulmonary arterial hypertension (PAH), angiotensin-converting enzyme (ACE)2 and angiotensin (Ang)-(1-7) have been shown to have vasodilatory, antiproliferative, antifibrotic and antihypertrophic properties. However, the status and role of the ACE2-Ang(1-7) axis in human PAH is incompletely understood. Methods: We studied 85 patients with a diagnosis of PAH of distinct aetiologies. 55 healthy blood donors paired for age and sex served as controls. Blood samples were obtained from the pulmonary artery in patients with PAH during right heart catheterisation. Peripheral blood was obtained for both groups. Ang (1-7) and -II were measured using zone capillary electrophoresis. Aldosterone, Ang(1-9), AngA and ACE2 were measured using ELISA, and ACE2 activity was determined enzymatically. Results: Of the 85 patients, 47 had idiopathic PAH, 25 had PAH associated with congenital heart disease and 13 had PAH associated with collagen vascular disease. Compared to controls, patients with PAH had a higher concentration of Angil (median 1.03, interquartile range 0.72-1.88 pmol.mL(-1) versus 0.19, 0.10-0.37 pmol.mL(-1); p<0.001) and of aldosterone (88.7, 58.7-132 ng.dL(-1) versus 12.9, 9.55-19.9 ng.dL(-1); p<0.001). Conversely, PAH patients had a lower concentration of Ang(1-7) than controls (0.69, 0474-0.91 pmol.mL(-1) versus 4.07, 2.82-6.73 pmol.mL(-1); p<0.001), and a lower concentration of Ang(1-9) and AngA. Similarly, the ACE2 concentration was higher than in controls (8.7, 5.35-13.2 ng.mL(-1) versus 4.53, 1.47-14.3 ng.mL(-1) ; p=0.011), whereas the ACE2 activity was significantly reduced (1.88, 1.08-2.81 nmol.mL(-1) versus 5.97, 3.1-17.8 nmol.mL(-1); p<0.001). No significant differences were found among the three different aetiological forms of PAH. Conclusions: The AngII-ACE2-Ang(1-7) axis appears to be altered in human PAH and we propose that this imbalance, in favour of AngII, plays a role in the pathogenesis of the severe PAH. Further mechanistic studies are warranted.