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Photoacoustic imaging biomarkers for monitoring biophysical changes during nanobubble-mediated radiation treatment

The development of novel anticancer therapies warrants the parallel development of biomarkers that can quantify their effectiveness. Photoacoustic imaging has the potential to measure changes in tumor vasculature during treatment. Establishing the accuracy of imaging biomarkers requires direct compa...

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Autores principales: Hysi, Eno, Fadhel, Muhannad N., Wang, Yanjie, Sebastian, Joseph A., Giles, Anoja, Czarnota, Gregory J., Exner, Agata A., Kolios, Michael C.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Elsevier 2020
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7393572/
https://www.ncbi.nlm.nih.gov/pubmed/32775198
http://dx.doi.org/10.1016/j.pacs.2020.100201
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author Hysi, Eno
Fadhel, Muhannad N.
Wang, Yanjie
Sebastian, Joseph A.
Giles, Anoja
Czarnota, Gregory J.
Exner, Agata A.
Kolios, Michael C.
author_facet Hysi, Eno
Fadhel, Muhannad N.
Wang, Yanjie
Sebastian, Joseph A.
Giles, Anoja
Czarnota, Gregory J.
Exner, Agata A.
Kolios, Michael C.
author_sort Hysi, Eno
collection PubMed
description The development of novel anticancer therapies warrants the parallel development of biomarkers that can quantify their effectiveness. Photoacoustic imaging has the potential to measure changes in tumor vasculature during treatment. Establishing the accuracy of imaging biomarkers requires direct comparisons with gold histological standards. In this work, we explore whether a new class of submicron, vascular disrupting, ultrasonically stimulated nanobubbles enhance radiation therapy. In vivo experiments were conducted on mice bearing prostate cancer tumors. Combined nanobubble plus radiation treatments were compared against conventional microbubbles and radiation alone (single 8 Gy fraction). Acoustic resolution photoacoustic imaging was used to monitor the effects of the treatments 2- and 24-hs post-administration. Histological examination provided metrics of tumor vascularity and tumoral cell death, both of which were compared to photoacoustic-derived biomarkers. Photoacoustic metrics of oxygen saturation reveal a 20 % decrease in oxygenation within 24 h post-treatment. The spectral slope metric could separate the response of the nanobubble treatments from the microbubble counterparts. This study shows that histopathological assessment correlated well with photoacoustic biomarkers of treatment response.
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spelling pubmed-73935722020-08-06 Photoacoustic imaging biomarkers for monitoring biophysical changes during nanobubble-mediated radiation treatment Hysi, Eno Fadhel, Muhannad N. Wang, Yanjie Sebastian, Joseph A. Giles, Anoja Czarnota, Gregory J. Exner, Agata A. Kolios, Michael C. Photoacoustics Research Article The development of novel anticancer therapies warrants the parallel development of biomarkers that can quantify their effectiveness. Photoacoustic imaging has the potential to measure changes in tumor vasculature during treatment. Establishing the accuracy of imaging biomarkers requires direct comparisons with gold histological standards. In this work, we explore whether a new class of submicron, vascular disrupting, ultrasonically stimulated nanobubbles enhance radiation therapy. In vivo experiments were conducted on mice bearing prostate cancer tumors. Combined nanobubble plus radiation treatments were compared against conventional microbubbles and radiation alone (single 8 Gy fraction). Acoustic resolution photoacoustic imaging was used to monitor the effects of the treatments 2- and 24-hs post-administration. Histological examination provided metrics of tumor vascularity and tumoral cell death, both of which were compared to photoacoustic-derived biomarkers. Photoacoustic metrics of oxygen saturation reveal a 20 % decrease in oxygenation within 24 h post-treatment. The spectral slope metric could separate the response of the nanobubble treatments from the microbubble counterparts. This study shows that histopathological assessment correlated well with photoacoustic biomarkers of treatment response. Elsevier 2020-07-25 /pmc/articles/PMC7393572/ /pubmed/32775198 http://dx.doi.org/10.1016/j.pacs.2020.100201 Text en © 2020 The Author(s) http://creativecommons.org/licenses/by-nc-nd/4.0/ This is an open access article under the CC BY-NC-ND license (http://creativecommons.org/licenses/by-nc-nd/4.0/).
spellingShingle Research Article
Hysi, Eno
Fadhel, Muhannad N.
Wang, Yanjie
Sebastian, Joseph A.
Giles, Anoja
Czarnota, Gregory J.
Exner, Agata A.
Kolios, Michael C.
Photoacoustic imaging biomarkers for monitoring biophysical changes during nanobubble-mediated radiation treatment
title Photoacoustic imaging biomarkers for monitoring biophysical changes during nanobubble-mediated radiation treatment
title_full Photoacoustic imaging biomarkers for monitoring biophysical changes during nanobubble-mediated radiation treatment
title_fullStr Photoacoustic imaging biomarkers for monitoring biophysical changes during nanobubble-mediated radiation treatment
title_full_unstemmed Photoacoustic imaging biomarkers for monitoring biophysical changes during nanobubble-mediated radiation treatment
title_short Photoacoustic imaging biomarkers for monitoring biophysical changes during nanobubble-mediated radiation treatment
title_sort photoacoustic imaging biomarkers for monitoring biophysical changes during nanobubble-mediated radiation treatment
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7393572/
https://www.ncbi.nlm.nih.gov/pubmed/32775198
http://dx.doi.org/10.1016/j.pacs.2020.100201
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