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Murine breast cancer feed arteries are thin-walled with reduced α(1A)-adrenoceptor expression and attenuated sympathetic vasocontraction

BACKGROUND: Perfusion of breast cancer tissue limits oxygen availability and metabolism but angiogenesis inhibitors have hitherto been unsuccessful for breast cancer therapy. In order to identify abnormalities and possible therapeutic targets in mature cancer arteries, we here characterize the struc...

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Autores principales: Froelunde, Anne Sofie, Ohlenbusch, Marit, Hansen, Kristoffer B., Jessen, Nicolai, Kim, Sukhan, Boedtkjer, Ebbe
Formato: Online Artículo Texto
Lenguaje:English
Publicado: BioMed Central 2018
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5863844/
https://www.ncbi.nlm.nih.gov/pubmed/29566737
http://dx.doi.org/10.1186/s13058-018-0952-8
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author Froelunde, Anne Sofie
Ohlenbusch, Marit
Hansen, Kristoffer B.
Jessen, Nicolai
Kim, Sukhan
Boedtkjer, Ebbe
author_facet Froelunde, Anne Sofie
Ohlenbusch, Marit
Hansen, Kristoffer B.
Jessen, Nicolai
Kim, Sukhan
Boedtkjer, Ebbe
author_sort Froelunde, Anne Sofie
collection PubMed
description BACKGROUND: Perfusion of breast cancer tissue limits oxygen availability and metabolism but angiogenesis inhibitors have hitherto been unsuccessful for breast cancer therapy. In order to identify abnormalities and possible therapeutic targets in mature cancer arteries, we here characterize the structure and function of cancer feed arteries and corresponding control arteries from female FVB/N mice with ErbB2-induced breast cancer. METHODS: We investigated the contractile function of breast cancer feed arteries and matched control arteries by isometric myography and evaluated membrane potentials and intracellular [Ca(2+)] using sharp electrodes and fluorescence microscopy, respectively. Arterial wall structure is assessed by transmission light microscopy of arteries mounted in wire myographs and by evaluation of histological sections using the unbiased stereological disector technique. We determined the expression of messenger RNA by reverse transcription and quantitative polymerase chain reaction and studied receptor expression by confocal microscopy of arteries labelled with the BODIPY-tagged α(1)-adrenoceptor antagonist prazosin. RESULTS: Breast cancer feed arteries are thin-walled and produce lower tension than control arteries of similar diameter in response to norepinephrine, thromboxane-analog U46619, endothelin-1, and depolarization with elevated [K(+)]. Fewer layers of similarly-sized vascular smooth muscle cells explain the reduced media thickness of breast cancer arteries. Evidenced by lower media stress, norepinephrine-induced and thromboxane-induced tension development of breast cancer arteries is reduced more than is explained by the thinner media. Conversely, media stress during stimulation with endothelin-1 and elevated [K(+)] is similar between breast cancer and control arteries. Correspondingly, vascular smooth muscle cell depolarizations and intracellular Ca(2+) responses are attenuated in breast cancer feed arteries during norepinephrine but not during endothelin-1 stimulation. Protein expression of α(1)-adrenoceptors and messenger RNA levels for α(1A)-adrenoceptors are lower in breast cancer arteries than control arteries. Sympathetic vasocontraction elicited by electrical field stimulation is inhibited by α(1)-adrenoceptor blockade and reduced in breast cancer feed arteries compared to control arteries. CONCLUSION: Thinner media and lower α(1)-adrenoceptor expression weaken contractions of breast cancer feed arteries in response to sympathetic activity. We propose that abnormalities in breast cancer arteries can be exploited to modify tumor perfusion and thereby either starve cancer cells or facilitate drug and oxygen delivery during chemotherapy or radiotherapy. ELECTRONIC SUPPLEMENTARY MATERIAL: The online version of this article (10.1186/s13058-018-0952-8) contains supplementary material, which is available to authorized users.
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spelling pubmed-58638442018-03-27 Murine breast cancer feed arteries are thin-walled with reduced α(1A)-adrenoceptor expression and attenuated sympathetic vasocontraction Froelunde, Anne Sofie Ohlenbusch, Marit Hansen, Kristoffer B. Jessen, Nicolai Kim, Sukhan Boedtkjer, Ebbe Breast Cancer Res Research Article BACKGROUND: Perfusion of breast cancer tissue limits oxygen availability and metabolism but angiogenesis inhibitors have hitherto been unsuccessful for breast cancer therapy. In order to identify abnormalities and possible therapeutic targets in mature cancer arteries, we here characterize the structure and function of cancer feed arteries and corresponding control arteries from female FVB/N mice with ErbB2-induced breast cancer. METHODS: We investigated the contractile function of breast cancer feed arteries and matched control arteries by isometric myography and evaluated membrane potentials and intracellular [Ca(2+)] using sharp electrodes and fluorescence microscopy, respectively. Arterial wall structure is assessed by transmission light microscopy of arteries mounted in wire myographs and by evaluation of histological sections using the unbiased stereological disector technique. We determined the expression of messenger RNA by reverse transcription and quantitative polymerase chain reaction and studied receptor expression by confocal microscopy of arteries labelled with the BODIPY-tagged α(1)-adrenoceptor antagonist prazosin. RESULTS: Breast cancer feed arteries are thin-walled and produce lower tension than control arteries of similar diameter in response to norepinephrine, thromboxane-analog U46619, endothelin-1, and depolarization with elevated [K(+)]. Fewer layers of similarly-sized vascular smooth muscle cells explain the reduced media thickness of breast cancer arteries. Evidenced by lower media stress, norepinephrine-induced and thromboxane-induced tension development of breast cancer arteries is reduced more than is explained by the thinner media. Conversely, media stress during stimulation with endothelin-1 and elevated [K(+)] is similar between breast cancer and control arteries. Correspondingly, vascular smooth muscle cell depolarizations and intracellular Ca(2+) responses are attenuated in breast cancer feed arteries during norepinephrine but not during endothelin-1 stimulation. Protein expression of α(1)-adrenoceptors and messenger RNA levels for α(1A)-adrenoceptors are lower in breast cancer arteries than control arteries. Sympathetic vasocontraction elicited by electrical field stimulation is inhibited by α(1)-adrenoceptor blockade and reduced in breast cancer feed arteries compared to control arteries. CONCLUSION: Thinner media and lower α(1)-adrenoceptor expression weaken contractions of breast cancer feed arteries in response to sympathetic activity. We propose that abnormalities in breast cancer arteries can be exploited to modify tumor perfusion and thereby either starve cancer cells or facilitate drug and oxygen delivery during chemotherapy or radiotherapy. ELECTRONIC SUPPLEMENTARY MATERIAL: The online version of this article (10.1186/s13058-018-0952-8) contains supplementary material, which is available to authorized users. BioMed Central 2018-03-22 2018 /pmc/articles/PMC5863844/ /pubmed/29566737 http://dx.doi.org/10.1186/s13058-018-0952-8 Text en © The Author(s). 2018 Open AccessThis article is distributed under the terms of the Creative Commons Attribution 4.0 International License (http://creativecommons.org/licenses/by/4.0/), which permits unrestricted use, distribution, and reproduction in any medium, provided you give appropriate credit to the original author(s) and the source, provide a link to the Creative Commons license, and indicate if changes were made. The Creative Commons Public Domain Dedication waiver (http://creativecommons.org/publicdomain/zero/1.0/) applies to the data made available in this article, unless otherwise stated.
spellingShingle Research Article
Froelunde, Anne Sofie
Ohlenbusch, Marit
Hansen, Kristoffer B.
Jessen, Nicolai
Kim, Sukhan
Boedtkjer, Ebbe
Murine breast cancer feed arteries are thin-walled with reduced α(1A)-adrenoceptor expression and attenuated sympathetic vasocontraction
title Murine breast cancer feed arteries are thin-walled with reduced α(1A)-adrenoceptor expression and attenuated sympathetic vasocontraction
title_full Murine breast cancer feed arteries are thin-walled with reduced α(1A)-adrenoceptor expression and attenuated sympathetic vasocontraction
title_fullStr Murine breast cancer feed arteries are thin-walled with reduced α(1A)-adrenoceptor expression and attenuated sympathetic vasocontraction
title_full_unstemmed Murine breast cancer feed arteries are thin-walled with reduced α(1A)-adrenoceptor expression and attenuated sympathetic vasocontraction
title_short Murine breast cancer feed arteries are thin-walled with reduced α(1A)-adrenoceptor expression and attenuated sympathetic vasocontraction
title_sort murine breast cancer feed arteries are thin-walled with reduced α(1a)-adrenoceptor expression and attenuated sympathetic vasocontraction
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5863844/
https://www.ncbi.nlm.nih.gov/pubmed/29566737
http://dx.doi.org/10.1186/s13058-018-0952-8
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