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A Novel Role of Semaphorin 3C in Modulating Systemic and Renal Hemodynamics

BACKGROUND: Alterations of renal hemodynamics play an essential role in renal homeostasis and kidney diseases. Recent data indicated that semaphorin 3C (SEMA3C), a secreted glycoprotein involved in vessel development, can modulate renal vascular permeability in acute kidney injury, but whether and h...

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Autores principales: Cai, Anxiang, Placier, Sandrine, Louedec, Liliane, Frère, Perrine, Ouchelouche, Souhila, Chatziantoniou, Christos, Calmont, Amélie
Formato: Online Artículo Texto
Lenguaje:English
Publicado: S. Karger AG 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10389799/
https://www.ncbi.nlm.nih.gov/pubmed/36580904
http://dx.doi.org/10.1159/000528259
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author Cai, Anxiang
Placier, Sandrine
Louedec, Liliane
Frère, Perrine
Ouchelouche, Souhila
Chatziantoniou, Christos
Calmont, Amélie
author_facet Cai, Anxiang
Placier, Sandrine
Louedec, Liliane
Frère, Perrine
Ouchelouche, Souhila
Chatziantoniou, Christos
Calmont, Amélie
author_sort Cai, Anxiang
collection PubMed
description BACKGROUND: Alterations of renal hemodynamics play an essential role in renal homeostasis and kidney diseases. Recent data indicated that semaphorin 3C (SEMA3C), a secreted glycoprotein involved in vessel development, can modulate renal vascular permeability in acute kidney injury, but whether and how it might impact systemic and renal hemodynamics is unknown. OBJECTIVES: The objective of the study was to explore the effect of SEMA3C on systemic and renal hemodynamics. METHODS: SEMA3C recombinant protein was administered intravenously in two-month-old wild-type mice, and the variations of mean arterial pressure, heart rate, renal blood flow, and renal vascular resistance were measured and analyzed. RESULTS: Acute administration of SEMA3C induced (i) systemic hemodynamic changes, including mean arterial pressure decrease and heart rate augmentation; (ii) renal hemodynamic changes, including reduced vascular resistance and elevated renal blood flow. Continuous perfusion of SEMA3C had no significant effect on systemic or renal hemodynamics. CONCLUSION: SEMA3C is a potent vasodilator affecting both systemic and renal hemodynamics in mice.
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spelling pubmed-103897992023-08-01 A Novel Role of Semaphorin 3C in Modulating Systemic and Renal Hemodynamics Cai, Anxiang Placier, Sandrine Louedec, Liliane Frère, Perrine Ouchelouche, Souhila Chatziantoniou, Christos Calmont, Amélie Nephron Clin Pract Experimental Nephrology and Genetics: Research Article BACKGROUND: Alterations of renal hemodynamics play an essential role in renal homeostasis and kidney diseases. Recent data indicated that semaphorin 3C (SEMA3C), a secreted glycoprotein involved in vessel development, can modulate renal vascular permeability in acute kidney injury, but whether and how it might impact systemic and renal hemodynamics is unknown. OBJECTIVES: The objective of the study was to explore the effect of SEMA3C on systemic and renal hemodynamics. METHODS: SEMA3C recombinant protein was administered intravenously in two-month-old wild-type mice, and the variations of mean arterial pressure, heart rate, renal blood flow, and renal vascular resistance were measured and analyzed. RESULTS: Acute administration of SEMA3C induced (i) systemic hemodynamic changes, including mean arterial pressure decrease and heart rate augmentation; (ii) renal hemodynamic changes, including reduced vascular resistance and elevated renal blood flow. Continuous perfusion of SEMA3C had no significant effect on systemic or renal hemodynamics. CONCLUSION: SEMA3C is a potent vasodilator affecting both systemic and renal hemodynamics in mice. S. Karger AG 2023-07 2022-12-29 /pmc/articles/PMC10389799/ /pubmed/36580904 http://dx.doi.org/10.1159/000528259 Text en Copyright © 2022 by The Author(s). Published by S. Karger AG, Basel https://creativecommons.org/licenses/by-nc/4.0/This article is licensed under the Creative Commons Attribution-NonCommercial 4.0 International License (CC BY-NC). Usage and distribution for commercial purposes requires written permission.
spellingShingle Experimental Nephrology and Genetics: Research Article
Cai, Anxiang
Placier, Sandrine
Louedec, Liliane
Frère, Perrine
Ouchelouche, Souhila
Chatziantoniou, Christos
Calmont, Amélie
A Novel Role of Semaphorin 3C in Modulating Systemic and Renal Hemodynamics
title A Novel Role of Semaphorin 3C in Modulating Systemic and Renal Hemodynamics
title_full A Novel Role of Semaphorin 3C in Modulating Systemic and Renal Hemodynamics
title_fullStr A Novel Role of Semaphorin 3C in Modulating Systemic and Renal Hemodynamics
title_full_unstemmed A Novel Role of Semaphorin 3C in Modulating Systemic and Renal Hemodynamics
title_short A Novel Role of Semaphorin 3C in Modulating Systemic and Renal Hemodynamics
title_sort novel role of semaphorin 3c in modulating systemic and renal hemodynamics
topic Experimental Nephrology and Genetics: Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10389799/
https://www.ncbi.nlm.nih.gov/pubmed/36580904
http://dx.doi.org/10.1159/000528259
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