Probiotics (VSL#3) prevent endothelial dysfunction in rats with portal hypertension: role of the angiotensin system.
basic_science · Level V
Where this comes from
- Record sourced from PubMed, PMID 24832090.
- Also identified by DOI 10.1371/journal.pone.0097458 and PMC identifier 4022585.
- Licence recorded as CC BY.
- The licence permits redistribution, so the abstract is shown in full and the full text is available from the publisher.
Abstract
AIMS: Portal hypertension characterized by generalized vasodilatation with endothelial dysfunction affecting nitric oxide (NO) and endothelium-dependent hyperpolarization (EDH) has been suggested to involve bacterial translocation and/or the angiotensin system. The possibility that ingestion of probiotics prevents endothelial dysfunction in rats following common bile duct ligation (CBDL) was evaluated. METHODS: Rats received either control drinking water or the probiotic VSL#3 solution (50 billion bacteria.kg body wt⁻¹.day⁻¹) for 7 weeks. After 3 weeks, rats underwent surgery with either resection of the common bile duct or sham surgery. The reactivity of mesenteric artery rings was assessed in organ chambers, expression of proteins by immunofluorescence and Western blot analysis, oxidative stress using dihydroethidium, and plasma pro-inflammatory cytokine levels by flow cytometry. RESULTS: Both NO- and EDH-mediated relaxations to acetylcholine were reduced in the CBDL group compared to the sham group, and associated with a reduced expression of Cx37, Cx40, Cx43, IKCa and SKCa and an increased expression of endothelial NO synthase (eNOS). In aortic sections, increased expression of NADPH oxidase subunits, angiotensin converting enzyme, AT1 receptors and angiotensin II, and formation of ROS and peroxynitrite were observed. VSL#3 prevented the deleterious effect of CBDL on EDH-mediated relaxations, vascular expression of connexins, IKCa, SKCa and eNOS, oxidative stress, and the angiotensin system. VSL#3 prevented the CBDL-induced increased plasma TNF-α, IL-1α and MCP-1 levels. CONCLUSIONS: These findings indicate that VSL#3 ingestion prevents endothelial dysfunction in the mesenteric artery of CBDL rats, and this effect is associated with an improved vascular oxidative stress most likely by reducing bacterial translocation and the local angiotensin system.
Medical subject headings
- Angiotensins
- Angiotensins/chemistry
- Angiotensins/physiology
- Animals
- Bacterial Translocation
- Body Weight
- Body Weight/drug effects
- Common Bile Duct
- Common Bile Duct/surgery
- Cytokines
- Cytokines/metabolism
- Endothelium
- Endothelium/pathology
- Hypertension, Portal
- Hypertension, Portal/pathology
- Inflammation
- Liver
- Liver/drug effects
- Liver Cirrhosis
- Liver Cirrhosis/physiopathology
- Male
- Mesenteric Arteries
- Mesenteric Arteries/pathology
- Mitochondria
- Mitochondria/pathology
- Nitric Oxide
- Nitric Oxide/chemistry
- Organ Size
- Organ Size/drug effects
- Oxidative Stress
- Probiotics
- Probiotics/chemistry
- Probiotics/therapeutic use
- Rats
- Rats, Wistar
- Reactive Oxygen Species
- Spleen
- Spleen/drug effects