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Radiation therapy attenuates lymphatic vessel repair by reducing VEGFR-3 signalling

Introduction: Surgery and radiotherapy are key cancer treatments and the leading causes of damage to the lymphatics, a vascular network critical to fluid homeostasis and immunity. The clinical manifestation of this damage constitutes a devastating side-effect of cancer treatment, known as lymphoedem...

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Autores principales: Pillay, Vinochani, Shukla, Lipi, Herle, Prad, Maciburko, Simon, Bandara, Nadeeka, Reid, Isabella, Morgan, Steven, Yuan, Yinan, Luu, Jennii, Cowley, Karla J., Ramm, Susanne, Simpson, Kaylene J., Achen, Marc G., Stacker, Steven A., Shayan, Ramin, Karnezis, Tara
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Frontiers Media S.A. 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10176020/
https://www.ncbi.nlm.nih.gov/pubmed/37188266
http://dx.doi.org/10.3389/fphar.2023.1152314
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author Pillay, Vinochani
Shukla, Lipi
Herle, Prad
Maciburko, Simon
Bandara, Nadeeka
Reid, Isabella
Morgan, Steven
Yuan, Yinan
Luu, Jennii
Cowley, Karla J.
Ramm, Susanne
Simpson, Kaylene J.
Achen, Marc G.
Stacker, Steven A.
Shayan, Ramin
Karnezis, Tara
author_facet Pillay, Vinochani
Shukla, Lipi
Herle, Prad
Maciburko, Simon
Bandara, Nadeeka
Reid, Isabella
Morgan, Steven
Yuan, Yinan
Luu, Jennii
Cowley, Karla J.
Ramm, Susanne
Simpson, Kaylene J.
Achen, Marc G.
Stacker, Steven A.
Shayan, Ramin
Karnezis, Tara
author_sort Pillay, Vinochani
collection PubMed
description Introduction: Surgery and radiotherapy are key cancer treatments and the leading causes of damage to the lymphatics, a vascular network critical to fluid homeostasis and immunity. The clinical manifestation of this damage constitutes a devastating side-effect of cancer treatment, known as lymphoedema. Lymphoedema is a chronic condition evolving from the accumulation of interstitial fluid due to impaired drainage via the lymphatics and is recognised to contribute significant morbidity to patients who survive their cancer. Nevertheless, the molecular mechanisms underlying the damage inflicted on lymphatic vessels, and particularly the lymphatic endothelial cells (LEC) that constitute them, by these treatment modalities, remain poorly understood. Methods: We used a combination of cell based assays, biochemistry and animal models of lymphatic injury to examine the molecular mechanisms behind LEC injury and the subsequent effects on lymphatic vessels, particularly the role of the VEGF-C/VEGF-D/VEGFR-3 lymphangiogenic signalling pathway, in lymphatic injury underpinning the development of lymphoedema. Results: We demonstrate that radiotherapy selectively impairs key LEC functions needed for new lymphatic vessel growth (lymphangiogenesis). This effect is mediated by attenuation of VEGFR-3 signalling and downstream signalling cascades. VEGFR-3 protein levels were downregulated in LEC that were exposed to radiation, and LEC were therefore selectively less responsive to VEGF-C and VEGF-D. These findings were validated in our animal models of radiation and surgical injury. Discussion: Our data provide mechanistic insight into injury sustained by LEC and lymphatics during surgical and radiotherapy cancer treatments and underscore the need for alternative non-VEGF-C/VEGFR-3-based therapies to treat lymphoedema.
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spelling pubmed-101760202023-05-13 Radiation therapy attenuates lymphatic vessel repair by reducing VEGFR-3 signalling Pillay, Vinochani Shukla, Lipi Herle, Prad Maciburko, Simon Bandara, Nadeeka Reid, Isabella Morgan, Steven Yuan, Yinan Luu, Jennii Cowley, Karla J. Ramm, Susanne Simpson, Kaylene J. Achen, Marc G. Stacker, Steven A. Shayan, Ramin Karnezis, Tara Front Pharmacol Pharmacology Introduction: Surgery and radiotherapy are key cancer treatments and the leading causes of damage to the lymphatics, a vascular network critical to fluid homeostasis and immunity. The clinical manifestation of this damage constitutes a devastating side-effect of cancer treatment, known as lymphoedema. Lymphoedema is a chronic condition evolving from the accumulation of interstitial fluid due to impaired drainage via the lymphatics and is recognised to contribute significant morbidity to patients who survive their cancer. Nevertheless, the molecular mechanisms underlying the damage inflicted on lymphatic vessels, and particularly the lymphatic endothelial cells (LEC) that constitute them, by these treatment modalities, remain poorly understood. Methods: We used a combination of cell based assays, biochemistry and animal models of lymphatic injury to examine the molecular mechanisms behind LEC injury and the subsequent effects on lymphatic vessels, particularly the role of the VEGF-C/VEGF-D/VEGFR-3 lymphangiogenic signalling pathway, in lymphatic injury underpinning the development of lymphoedema. Results: We demonstrate that radiotherapy selectively impairs key LEC functions needed for new lymphatic vessel growth (lymphangiogenesis). This effect is mediated by attenuation of VEGFR-3 signalling and downstream signalling cascades. VEGFR-3 protein levels were downregulated in LEC that were exposed to radiation, and LEC were therefore selectively less responsive to VEGF-C and VEGF-D. These findings were validated in our animal models of radiation and surgical injury. Discussion: Our data provide mechanistic insight into injury sustained by LEC and lymphatics during surgical and radiotherapy cancer treatments and underscore the need for alternative non-VEGF-C/VEGFR-3-based therapies to treat lymphoedema. Frontiers Media S.A. 2023-04-28 /pmc/articles/PMC10176020/ /pubmed/37188266 http://dx.doi.org/10.3389/fphar.2023.1152314 Text en Copyright © 2023 Pillay, Shukla, Herle, Maciburko, Bandara, Reid, Morgan, Yuan, Luu, Cowley, Ramm, Simpson, Achen, Stacker, Shayan and Karnezis. https://creativecommons.org/licenses/by/4.0/This is an open-access article distributed under the terms of the Creative Commons Attribution License (CC BY). The use, distribution or reproduction in other forums is permitted, provided the original author(s) and the copyright owner(s) are credited and that the original publication in this journal is cited, in accordance with accepted academic practice. No use, distribution or reproduction is permitted which does not comply with these terms.
spellingShingle Pharmacology
Pillay, Vinochani
Shukla, Lipi
Herle, Prad
Maciburko, Simon
Bandara, Nadeeka
Reid, Isabella
Morgan, Steven
Yuan, Yinan
Luu, Jennii
Cowley, Karla J.
Ramm, Susanne
Simpson, Kaylene J.
Achen, Marc G.
Stacker, Steven A.
Shayan, Ramin
Karnezis, Tara
Radiation therapy attenuates lymphatic vessel repair by reducing VEGFR-3 signalling
title Radiation therapy attenuates lymphatic vessel repair by reducing VEGFR-3 signalling
title_full Radiation therapy attenuates lymphatic vessel repair by reducing VEGFR-3 signalling
title_fullStr Radiation therapy attenuates lymphatic vessel repair by reducing VEGFR-3 signalling
title_full_unstemmed Radiation therapy attenuates lymphatic vessel repair by reducing VEGFR-3 signalling
title_short Radiation therapy attenuates lymphatic vessel repair by reducing VEGFR-3 signalling
title_sort radiation therapy attenuates lymphatic vessel repair by reducing vegfr-3 signalling
topic Pharmacology
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10176020/
https://www.ncbi.nlm.nih.gov/pubmed/37188266
http://dx.doi.org/10.3389/fphar.2023.1152314
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