Impact of S1P Mimetics on Mesenteric Ischemia/Reperfusion Injury

Standard

Impact of S1P Mimetics on Mesenteric Ischemia/Reperfusion Injury. / Potì, Francesco; Giorgio, Carmine; Zini, Irene; Nofer, Jerzy-Roch; Vivo, Valentina; Palese, Simone; Ballabeni, Vigilio; Barocelli, Elisabetta; Bertoni, Simona.

in: PHARMACEUTICALS-BASE, Jahrgang 13, Nr. 10, 298, 09.10.2020.

Publikationen: SCORING: Beitrag in Fachzeitschrift/ZeitungSCORING: ZeitschriftenaufsatzForschungBegutachtung

Harvard

Potì, F, Giorgio, C, Zini, I, Nofer, J-R, Vivo, V, Palese, S, Ballabeni, V, Barocelli, E & Bertoni, S 2020, 'Impact of S1P Mimetics on Mesenteric Ischemia/Reperfusion Injury', PHARMACEUTICALS-BASE, Jg. 13, Nr. 10, 298. https://doi.org/10.3390/ph13100298

APA

Potì, F., Giorgio, C., Zini, I., Nofer, J-R., Vivo, V., Palese, S., Ballabeni, V., Barocelli, E., & Bertoni, S. (2020). Impact of S1P Mimetics on Mesenteric Ischemia/Reperfusion Injury. PHARMACEUTICALS-BASE, 13(10), [298]. https://doi.org/10.3390/ph13100298

Vancouver

Potì F, Giorgio C, Zini I, Nofer J-R, Vivo V, Palese S et al. Impact of S1P Mimetics on Mesenteric Ischemia/Reperfusion Injury. PHARMACEUTICALS-BASE. 2020 Okt 9;13(10). 298. https://doi.org/10.3390/ph13100298

Bibtex

@article{74cd97bfe62a44ef99b6eced627d02d5,
title = "Impact of S1P Mimetics on Mesenteric Ischemia/Reperfusion Injury",
abstract = "Mesenteric ischemia/reperfusion (I/R), following the transient deprivation of blood flow to the gut, triggers an acute flogistic process involving the disruption of endothelial and epithelial barriers integrity, the activation of immune cells, and the abundant release of inflammatory mediators. Among them, the lipid mediator sphingosine-1-phosphate (S1P) is involved in maintaining epithelial and endothelial barrier integrity and in governing the migration of immune cells through the interaction with S1P1-5 receptors. Therefore, the present work aims to investigate the involvement of S1P signaling in intestinal I/R-induced injury by studying the effects of FTY720, the non-selective S1P1,3-5 agonist, and comparing them with the responses to ozanimod, selective S1P1,5 agonist, in a murine model of gut I/R. Intestinal edema, gut and lung neutrophil infiltration, and oxidative stress were evaluated through biochemical and morphological assays. The collected results highlight the protective action of FTY720 against the inflammatory cascade elicited by mesenteric I/R injury, mainly through the control of vascular barrier integrity. While these beneficial effects were mimicked by ozanimod and can be therefore attributed largely to the effects exerted by FTY720 on S1P1, the recruitment of myeloid cells to the injured areas, limited by FTY720 but not by ozanimod, rather suggests the involvement of other receptor subtypes.",
author = "Francesco Pot{\`i} and Carmine Giorgio and Irene Zini and Jerzy-Roch Nofer and Valentina Vivo and Simone Palese and Vigilio Ballabeni and Elisabetta Barocelli and Simona Bertoni",
year = "2020",
month = oct,
day = "9",
doi = "10.3390/ph13100298",
language = "English",
volume = "13",
journal = "PHARMACEUTICALS-BASE",
issn = "1424-8247",
publisher = "Multidisciplinary Digital Publishing Institute",
number = "10",

}

RIS

TY - JOUR

T1 - Impact of S1P Mimetics on Mesenteric Ischemia/Reperfusion Injury

AU - Potì, Francesco

AU - Giorgio, Carmine

AU - Zini, Irene

AU - Nofer, Jerzy-Roch

AU - Vivo, Valentina

AU - Palese, Simone

AU - Ballabeni, Vigilio

AU - Barocelli, Elisabetta

AU - Bertoni, Simona

PY - 2020/10/9

Y1 - 2020/10/9

N2 - Mesenteric ischemia/reperfusion (I/R), following the transient deprivation of blood flow to the gut, triggers an acute flogistic process involving the disruption of endothelial and epithelial barriers integrity, the activation of immune cells, and the abundant release of inflammatory mediators. Among them, the lipid mediator sphingosine-1-phosphate (S1P) is involved in maintaining epithelial and endothelial barrier integrity and in governing the migration of immune cells through the interaction with S1P1-5 receptors. Therefore, the present work aims to investigate the involvement of S1P signaling in intestinal I/R-induced injury by studying the effects of FTY720, the non-selective S1P1,3-5 agonist, and comparing them with the responses to ozanimod, selective S1P1,5 agonist, in a murine model of gut I/R. Intestinal edema, gut and lung neutrophil infiltration, and oxidative stress were evaluated through biochemical and morphological assays. The collected results highlight the protective action of FTY720 against the inflammatory cascade elicited by mesenteric I/R injury, mainly through the control of vascular barrier integrity. While these beneficial effects were mimicked by ozanimod and can be therefore attributed largely to the effects exerted by FTY720 on S1P1, the recruitment of myeloid cells to the injured areas, limited by FTY720 but not by ozanimod, rather suggests the involvement of other receptor subtypes.

AB - Mesenteric ischemia/reperfusion (I/R), following the transient deprivation of blood flow to the gut, triggers an acute flogistic process involving the disruption of endothelial and epithelial barriers integrity, the activation of immune cells, and the abundant release of inflammatory mediators. Among them, the lipid mediator sphingosine-1-phosphate (S1P) is involved in maintaining epithelial and endothelial barrier integrity and in governing the migration of immune cells through the interaction with S1P1-5 receptors. Therefore, the present work aims to investigate the involvement of S1P signaling in intestinal I/R-induced injury by studying the effects of FTY720, the non-selective S1P1,3-5 agonist, and comparing them with the responses to ozanimod, selective S1P1,5 agonist, in a murine model of gut I/R. Intestinal edema, gut and lung neutrophil infiltration, and oxidative stress were evaluated through biochemical and morphological assays. The collected results highlight the protective action of FTY720 against the inflammatory cascade elicited by mesenteric I/R injury, mainly through the control of vascular barrier integrity. While these beneficial effects were mimicked by ozanimod and can be therefore attributed largely to the effects exerted by FTY720 on S1P1, the recruitment of myeloid cells to the injured areas, limited by FTY720 but not by ozanimod, rather suggests the involvement of other receptor subtypes.

U2 - 10.3390/ph13100298

DO - 10.3390/ph13100298

M3 - SCORING: Journal article

C2 - 33050288

VL - 13

JO - PHARMACEUTICALS-BASE

JF - PHARMACEUTICALS-BASE

SN - 1424-8247

IS - 10

M1 - 298

ER -