Effects of arginine vasopressin on migration and respiratory burst activity in human leukocytes

Arginine vasopressin can bind to high-affinity vasopressin V1a receptors in human leukocytes. This study aims to investigate the effects of arginine vasopressin on migration and chemotaxis of neutrophils and oxygen free radical release by human leukocytes. Neutrophils and monocytes were obtained fro...

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Main Authors: Wiedermann Franz J., Watzinger Kathrin, Stichlberger Martina, Joannidis Michael, Kaehler Christian, Lederer Wolfgang
Format: Article
Language:English
Published: De Gruyter 2018-05-01
Series:Open Medicine
Subjects:
Online Access:https://doi.org/10.1515/med-2018-0020
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spelling doaj-1fa3d76d65574e1dad93d75444027ad42021-10-02T17:52:38ZengDe GruyterOpen Medicine2391-54632018-05-0113112212910.1515/med-2018-0020med-2018-0020Effects of arginine vasopressin on migration and respiratory burst activity in human leukocytesWiedermann Franz J.0Watzinger Kathrin1Stichlberger Martina2Joannidis Michael3Kaehler Christian4Lederer Wolfgang5Department of Anesthesiology and Critical Care Medicine, Medical University of Innsbruck, Anichstrasse 35, 6020, Innsbruck, Austria, Tel. +43 512 504 80431Department of Internal Medicine, Medical University Innsbruck, Innsbruck, AustriaDepartment of Anesthesiology and Critical Care Medicine, Medical University Innsbruck, Innsbruck, AustriaDepartment of Internal Medicine, Medical University Innsbruck, Innsbruck, AustriaDepartment of Internal Medicine, Medical University Innsbruck, Innsbruck, AustriaDepartment of Anesthesiology and Critical Care Medicine, Medical University Innsbruck, Innsbruck, AustriaArginine vasopressin can bind to high-affinity vasopressin V1a receptors in human leukocytes. This study aims to investigate the effects of arginine vasopressin on migration and chemotaxis of neutrophils and oxygen free radical release by human leukocytes. Neutrophils and monocytes were obtained from peripheral blood samples of ten healthy volunteers. Leukocyte migration was microscopically assessed in a modified 48-blind well microchemotaxis chamber, and respiratory burst activity was estimated using 2’,7’-dichlorofluorescin diacetate in descending concentrations of arginine vasopressin. Arginine vasopressin stimulates migration of monocytes and neutrophils depending on concentration and on interaction with other chemoattractants. The strongest chemotactic responses of monocytes to arginine vasopressin were observed in the micro and nanomolar range and in the nanomolar range for neutrophils (p<0.001). Pre-incubation of leukocytes with arginine vasopressin decreased migration of leukocytes in a dose-dependent manner. Arginine vasopressin did not stimulate release of oxygen free radicals by neutrophils. Arginine vasopressin stimulates in a dose-dependent manner the migration of monocytes and neutrophils. However, pre-incubation of leukocytes with arginine vasopressin decreased the migratory response of monocytes and neutrophils to other chemoattractants. These findings may be of importance in the treatment regimen of patients with septic shock.https://doi.org/10.1515/med-2018-0020vasopressinleukocyte migrationchemotaxisrespiratory burstsepsis
collection DOAJ
language English
format Article
sources DOAJ
author Wiedermann Franz J.
Watzinger Kathrin
Stichlberger Martina
Joannidis Michael
Kaehler Christian
Lederer Wolfgang
spellingShingle Wiedermann Franz J.
Watzinger Kathrin
Stichlberger Martina
Joannidis Michael
Kaehler Christian
Lederer Wolfgang
Effects of arginine vasopressin on migration and respiratory burst activity in human leukocytes
Open Medicine
vasopressin
leukocyte migration
chemotaxis
respiratory burst
sepsis
author_facet Wiedermann Franz J.
Watzinger Kathrin
Stichlberger Martina
Joannidis Michael
Kaehler Christian
Lederer Wolfgang
author_sort Wiedermann Franz J.
title Effects of arginine vasopressin on migration and respiratory burst activity in human leukocytes
title_short Effects of arginine vasopressin on migration and respiratory burst activity in human leukocytes
title_full Effects of arginine vasopressin on migration and respiratory burst activity in human leukocytes
title_fullStr Effects of arginine vasopressin on migration and respiratory burst activity in human leukocytes
title_full_unstemmed Effects of arginine vasopressin on migration and respiratory burst activity in human leukocytes
title_sort effects of arginine vasopressin on migration and respiratory burst activity in human leukocytes
publisher De Gruyter
series Open Medicine
issn 2391-5463
publishDate 2018-05-01
description Arginine vasopressin can bind to high-affinity vasopressin V1a receptors in human leukocytes. This study aims to investigate the effects of arginine vasopressin on migration and chemotaxis of neutrophils and oxygen free radical release by human leukocytes. Neutrophils and monocytes were obtained from peripheral blood samples of ten healthy volunteers. Leukocyte migration was microscopically assessed in a modified 48-blind well microchemotaxis chamber, and respiratory burst activity was estimated using 2’,7’-dichlorofluorescin diacetate in descending concentrations of arginine vasopressin. Arginine vasopressin stimulates migration of monocytes and neutrophils depending on concentration and on interaction with other chemoattractants. The strongest chemotactic responses of monocytes to arginine vasopressin were observed in the micro and nanomolar range and in the nanomolar range for neutrophils (p<0.001). Pre-incubation of leukocytes with arginine vasopressin decreased migration of leukocytes in a dose-dependent manner. Arginine vasopressin did not stimulate release of oxygen free radicals by neutrophils. Arginine vasopressin stimulates in a dose-dependent manner the migration of monocytes and neutrophils. However, pre-incubation of leukocytes with arginine vasopressin decreased the migratory response of monocytes and neutrophils to other chemoattractants. These findings may be of importance in the treatment regimen of patients with septic shock.
topic vasopressin
leukocyte migration
chemotaxis
respiratory burst
sepsis
url https://doi.org/10.1515/med-2018-0020
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