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Ablation of lysozyme M-positive cells prevents aircraft noise-induced vascular damage without improving cerebral side effects

Aircraft noise induces vascular and cerebral inflammation and oxidative stress causing hypertension and cardiovascular/cerebral dysfunction. With the present studies, we sought to determine the role of myeloid cells in the vascular vs. cerebral consequences of exposure to aircraft noise. Toxin-media...

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Autores principales: Frenis, Katie, Helmstädter, Johanna, Ruan, Yue, Schramm, Eva, Kalinovic, Sanela, Kröller-Schön, Swenja, Bayo Jimenez, Maria Teresa, Hahad, Omar, Oelze, Matthias, Jiang, Subao, Wenzel, Philip, Sommer, Clemens J., Frauenknecht, Katrin B. M., Waisman, Ari, Gericke, Adrian, Daiber, Andreas, Münzel, Thomas, Steven, Sebastian
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Springer Berlin Heidelberg 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8087569/
https://www.ncbi.nlm.nih.gov/pubmed/33929610
http://dx.doi.org/10.1007/s00395-021-00869-5
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author Frenis, Katie
Helmstädter, Johanna
Ruan, Yue
Schramm, Eva
Kalinovic, Sanela
Kröller-Schön, Swenja
Bayo Jimenez, Maria Teresa
Hahad, Omar
Oelze, Matthias
Jiang, Subao
Wenzel, Philip
Sommer, Clemens J.
Frauenknecht, Katrin B. M.
Waisman, Ari
Gericke, Adrian
Daiber, Andreas
Münzel, Thomas
Steven, Sebastian
author_facet Frenis, Katie
Helmstädter, Johanna
Ruan, Yue
Schramm, Eva
Kalinovic, Sanela
Kröller-Schön, Swenja
Bayo Jimenez, Maria Teresa
Hahad, Omar
Oelze, Matthias
Jiang, Subao
Wenzel, Philip
Sommer, Clemens J.
Frauenknecht, Katrin B. M.
Waisman, Ari
Gericke, Adrian
Daiber, Andreas
Münzel, Thomas
Steven, Sebastian
author_sort Frenis, Katie
collection PubMed
description Aircraft noise induces vascular and cerebral inflammation and oxidative stress causing hypertension and cardiovascular/cerebral dysfunction. With the present studies, we sought to determine the role of myeloid cells in the vascular vs. cerebral consequences of exposure to aircraft noise. Toxin-mediated ablation of lysozyme M(+) (LysM(+)) myeloid cells was performed in LysMCre(iDTR) mice carrying a cre-inducible diphtheria toxin receptor. In the last 4d of toxin treatment, the animals were exposed to noise at maximum and mean sound pressure levels of 85 and 72 dB(A), respectively. Flow cytometry analysis revealed accumulation of CD45(+), CD11b(+), F4/80(+), and Ly6G(−)Ly6C(+) cells in the aortas of noise-exposed mice, which was prevented by LysM(+) cell ablation in the periphery, whereas brain infiltrates were even exacerbated upon ablation. Aircraft noise-induced increases in blood pressure and endothelial dysfunction of the aorta and retinal/mesenteric arterioles were almost completely normalized by ablation. Correspondingly, reactive oxygen species in the aorta, heart, and retinal/mesenteric vessels were attenuated in ablated noise-exposed mice, while microglial activation and abundance in the brain was greatly increased. Expression of phagocytic NADPH oxidase (NOX-2) and vascular cell adhesion molecule-1 (VCAM-1) mRNA in the aorta was reduced, while NFκB signaling appeared to be activated in the brain upon ablation. In sum, we show dissociation of cerebral and peripheral inflammatory reactions in response to aircraft noise after LysM(+) cell ablation, wherein peripheral myeloid inflammatory cells represent a dominant part of the pathomechanism for noise stress-induced cardiovascular effects and their central nervous counterparts, microglia, as key mediators in stress responses.
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spelling pubmed-80875692021-05-05 Ablation of lysozyme M-positive cells prevents aircraft noise-induced vascular damage without improving cerebral side effects Frenis, Katie Helmstädter, Johanna Ruan, Yue Schramm, Eva Kalinovic, Sanela Kröller-Schön, Swenja Bayo Jimenez, Maria Teresa Hahad, Omar Oelze, Matthias Jiang, Subao Wenzel, Philip Sommer, Clemens J. Frauenknecht, Katrin B. M. Waisman, Ari Gericke, Adrian Daiber, Andreas Münzel, Thomas Steven, Sebastian Basic Res Cardiol Original Contribution Aircraft noise induces vascular and cerebral inflammation and oxidative stress causing hypertension and cardiovascular/cerebral dysfunction. With the present studies, we sought to determine the role of myeloid cells in the vascular vs. cerebral consequences of exposure to aircraft noise. Toxin-mediated ablation of lysozyme M(+) (LysM(+)) myeloid cells was performed in LysMCre(iDTR) mice carrying a cre-inducible diphtheria toxin receptor. In the last 4d of toxin treatment, the animals were exposed to noise at maximum and mean sound pressure levels of 85 and 72 dB(A), respectively. Flow cytometry analysis revealed accumulation of CD45(+), CD11b(+), F4/80(+), and Ly6G(−)Ly6C(+) cells in the aortas of noise-exposed mice, which was prevented by LysM(+) cell ablation in the periphery, whereas brain infiltrates were even exacerbated upon ablation. Aircraft noise-induced increases in blood pressure and endothelial dysfunction of the aorta and retinal/mesenteric arterioles were almost completely normalized by ablation. Correspondingly, reactive oxygen species in the aorta, heart, and retinal/mesenteric vessels were attenuated in ablated noise-exposed mice, while microglial activation and abundance in the brain was greatly increased. Expression of phagocytic NADPH oxidase (NOX-2) and vascular cell adhesion molecule-1 (VCAM-1) mRNA in the aorta was reduced, while NFκB signaling appeared to be activated in the brain upon ablation. In sum, we show dissociation of cerebral and peripheral inflammatory reactions in response to aircraft noise after LysM(+) cell ablation, wherein peripheral myeloid inflammatory cells represent a dominant part of the pathomechanism for noise stress-induced cardiovascular effects and their central nervous counterparts, microglia, as key mediators in stress responses. Springer Berlin Heidelberg 2021-04-30 2021 /pmc/articles/PMC8087569/ /pubmed/33929610 http://dx.doi.org/10.1007/s00395-021-00869-5 Text en © The Author(s) 2021 https://creativecommons.org/licenses/by/4.0/Open AccessThis article is licensed under a Creative Commons Attribution 4.0 International License, which permits use, sharing, adaptation, distribution and reproduction in any medium or format, as long as you give appropriate credit to the original author(s) and the source, provide a link to the Creative Commons licence, and indicate if changes were made. The images or other third party material in this article are included in the article's Creative Commons licence, unless indicated otherwise in a credit line to the material. If material is not included in the article's Creative Commons licence and your intended use is not permitted by statutory regulation or exceeds the permitted use, you will need to obtain permission directly from the copyright holder. To view a copy of this licence, visit http://creativecommons.org/licenses/by/4.0/ (https://creativecommons.org/licenses/by/4.0/) .
spellingShingle Original Contribution
Frenis, Katie
Helmstädter, Johanna
Ruan, Yue
Schramm, Eva
Kalinovic, Sanela
Kröller-Schön, Swenja
Bayo Jimenez, Maria Teresa
Hahad, Omar
Oelze, Matthias
Jiang, Subao
Wenzel, Philip
Sommer, Clemens J.
Frauenknecht, Katrin B. M.
Waisman, Ari
Gericke, Adrian
Daiber, Andreas
Münzel, Thomas
Steven, Sebastian
Ablation of lysozyme M-positive cells prevents aircraft noise-induced vascular damage without improving cerebral side effects
title Ablation of lysozyme M-positive cells prevents aircraft noise-induced vascular damage without improving cerebral side effects
title_full Ablation of lysozyme M-positive cells prevents aircraft noise-induced vascular damage without improving cerebral side effects
title_fullStr Ablation of lysozyme M-positive cells prevents aircraft noise-induced vascular damage without improving cerebral side effects
title_full_unstemmed Ablation of lysozyme M-positive cells prevents aircraft noise-induced vascular damage without improving cerebral side effects
title_short Ablation of lysozyme M-positive cells prevents aircraft noise-induced vascular damage without improving cerebral side effects
title_sort ablation of lysozyme m-positive cells prevents aircraft noise-induced vascular damage without improving cerebral side effects
topic Original Contribution
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8087569/
https://www.ncbi.nlm.nih.gov/pubmed/33929610
http://dx.doi.org/10.1007/s00395-021-00869-5
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