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Anti-diarrheal therapeutic potential of diminazene aceturate stimulation of the ACE II/Ang-(1-7)/Mas receptor axis in mice: A trial study

Authors :
Thiago M. Sales
Thiago S.L. Araújo
Karine Lima Silva
Marcellus H.L.P. Souza
Kerolayne M. Nogueira
Talita Magalhães Rocha
Nayara A. Sousa
Ana Patrícia de Oliveira
Francisca Beatriz M. Sousa
Luan Kelves Miranda de Souza
Pedro Jorge Caldas Magalhães
Luzia Kalyne Almeida Moreira Leal
Jand V.R. Medeiros
Source :
Biochemical pharmacology. 186
Publication Year :
2020

Abstract

The angiotensin (Ang) II converting enzyme (ACE II) pathway has recently been shown to be associated with several beneficial effects on the body, especially on the cardiac system and gastrointestinal tract. ACE II is responsible for converting Ang II into the active peptide Ang-(1-7), which in turn binds to a metabotropic receptor, the Mas receptor (MasR). Recent studies have demonstrated that Diminazene Aceturate (DIZE), a trypanosomicide used in animals, activates the ACE II pathway. In this study, we aimed to evaluate the antidiarrheal effects promoted by the administration of DIZE to activate the ACE II/Ang-(1-7)/MasR axis in induced diarrhea mice models. The results show that activation of the ACE II pathway exerts antidiarrheal effects that reduce total diarrheal stools and enteropooling. In addition, it increases Na+/K+-ATPase activity and reduces gastrointestinal transit and thus inhibits contractions of intestinal smooth muscle; decreases transepithelial electrical resistance, epithelial permeability, PGE2-induced diarrhea, and proinflammatory cytokines; and increases anti-inflammatory cytokines. Enzyme-linked immunosorbent assay (ELISA) demonstrated that DIZE, when activating the ACE II/Ang-(1-7)/MasR axis, can still interact with GM1 receptors, which reduces cholera toxin-induced diarrhea. Therefore, activation of the ACE II/Ang-(1-7)/MasR axis can be an important pharmacological target for the treatment of diarrheal diseases.

Details

ISSN :
18732968
Volume :
186
Database :
OpenAIRE
Journal :
Biochemical pharmacology
Accession number :
edsair.doi.dedup.....447b2dd46b62d2279a080cc43862dd52