Cargando…

A novel method to quantify IRDye800CW fluorescent antibody probes ex vivo in tissue distribution studies

BACKGROUND: We describe a new method for biodistribution studies with IRDye800CW fluorescent antibody probes. This method allows the quantification of the IRDye800CW fluorescent tracer in percentage of injected dose per gram of tissue (% ID/g), and it is herein compared to the generally used referen...

Descripción completa

Detalles Bibliográficos
Autores principales: Oliveira, Sabrina, Cohen, Ruth, Walsum, Marijke Stigter-van, van Dongen, Guus AMS, Elias, Sjoerd G, van Diest, Paul J, Mali, Willem, van Bergen en Henegouwen, Paul MP
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Springer 2012
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3519726/
https://www.ncbi.nlm.nih.gov/pubmed/23009555
http://dx.doi.org/10.1186/2191-219X-2-50
_version_ 1782252723287097344
author Oliveira, Sabrina
Cohen, Ruth
Walsum, Marijke Stigter-van
van Dongen, Guus AMS
Elias, Sjoerd G
van Diest, Paul J
Mali, Willem
van Bergen en Henegouwen, Paul MP
author_facet Oliveira, Sabrina
Cohen, Ruth
Walsum, Marijke Stigter-van
van Dongen, Guus AMS
Elias, Sjoerd G
van Diest, Paul J
Mali, Willem
van Bergen en Henegouwen, Paul MP
author_sort Oliveira, Sabrina
collection PubMed
description BACKGROUND: We describe a new method for biodistribution studies with IRDye800CW fluorescent antibody probes. This method allows the quantification of the IRDye800CW fluorescent tracer in percentage of injected dose per gram of tissue (% ID/g), and it is herein compared to the generally used reference method that makes use of radioactivity. METHODS: Cetuximab was conjugated to both the near-infrared fluorophore IRDye800CW and/or the positron emitter 89-zirconium, which was injected in nude mice bearing A431 human tumor xenografts. Positron emission tomography (PET) and optical imaging were performed 24 h post-injection (p.i.). For the biodistribution study, organs and tumors were collected 24 h p.i., and each of these was halved. One half was used for the determination of probe uptake by radioactivity measurement. The other half was homogenized, and the content of the fluorescent probe was determined by extrapolation from a calibration curve made with the injected probe. RESULTS: Tumors were clearly visualized with both modalities, and the calculated tumor-to-normal tissue ratios were very similar for optical and PET imaging: 3.31 ± 1.09 and 3.15 ± 0.99, respectively. Although some variations were observed in ex vivo analyses, tumor uptake was within the same range for IRDye800CW and gamma ray quantification: 15.07 ± 3.66% ID/g and 13.92 ± 2.59% ID/g, respectively. CONCLUSIONS: The novel method for quantification of the optical tracer IRDye800CW gives similar results as the reference method of gamma ray quantification. This new method is considered very useful in the context of the preclinical development of IRDye800CW fluorescent probes for optical molecular imaging, likely contributing to the selection of lead compounds that are the most promising for clinical translation.
format Online
Article
Text
id pubmed-3519726
institution National Center for Biotechnology Information
language English
publishDate 2012
publisher Springer
record_format MEDLINE/PubMed
spelling pubmed-35197262012-12-12 A novel method to quantify IRDye800CW fluorescent antibody probes ex vivo in tissue distribution studies Oliveira, Sabrina Cohen, Ruth Walsum, Marijke Stigter-van van Dongen, Guus AMS Elias, Sjoerd G van Diest, Paul J Mali, Willem van Bergen en Henegouwen, Paul MP EJNMMI Res Original Research BACKGROUND: We describe a new method for biodistribution studies with IRDye800CW fluorescent antibody probes. This method allows the quantification of the IRDye800CW fluorescent tracer in percentage of injected dose per gram of tissue (% ID/g), and it is herein compared to the generally used reference method that makes use of radioactivity. METHODS: Cetuximab was conjugated to both the near-infrared fluorophore IRDye800CW and/or the positron emitter 89-zirconium, which was injected in nude mice bearing A431 human tumor xenografts. Positron emission tomography (PET) and optical imaging were performed 24 h post-injection (p.i.). For the biodistribution study, organs and tumors were collected 24 h p.i., and each of these was halved. One half was used for the determination of probe uptake by radioactivity measurement. The other half was homogenized, and the content of the fluorescent probe was determined by extrapolation from a calibration curve made with the injected probe. RESULTS: Tumors were clearly visualized with both modalities, and the calculated tumor-to-normal tissue ratios were very similar for optical and PET imaging: 3.31 ± 1.09 and 3.15 ± 0.99, respectively. Although some variations were observed in ex vivo analyses, tumor uptake was within the same range for IRDye800CW and gamma ray quantification: 15.07 ± 3.66% ID/g and 13.92 ± 2.59% ID/g, respectively. CONCLUSIONS: The novel method for quantification of the optical tracer IRDye800CW gives similar results as the reference method of gamma ray quantification. This new method is considered very useful in the context of the preclinical development of IRDye800CW fluorescent probes for optical molecular imaging, likely contributing to the selection of lead compounds that are the most promising for clinical translation. Springer 2012-09-25 /pmc/articles/PMC3519726/ /pubmed/23009555 http://dx.doi.org/10.1186/2191-219X-2-50 Text en Copyright ©2012 Oliveira et al.; licensee Springer. http://creativecommons.org/licenses/by/2.0 This is an Open Access article distributed under the terms of the Creative Commons Attribution License (http://creativecommons.org/licenses/by/2.0), which permits unrestricted use, distribution, and reproduction in any medium, provided the original work is properly cited.
spellingShingle Original Research
Oliveira, Sabrina
Cohen, Ruth
Walsum, Marijke Stigter-van
van Dongen, Guus AMS
Elias, Sjoerd G
van Diest, Paul J
Mali, Willem
van Bergen en Henegouwen, Paul MP
A novel method to quantify IRDye800CW fluorescent antibody probes ex vivo in tissue distribution studies
title A novel method to quantify IRDye800CW fluorescent antibody probes ex vivo in tissue distribution studies
title_full A novel method to quantify IRDye800CW fluorescent antibody probes ex vivo in tissue distribution studies
title_fullStr A novel method to quantify IRDye800CW fluorescent antibody probes ex vivo in tissue distribution studies
title_full_unstemmed A novel method to quantify IRDye800CW fluorescent antibody probes ex vivo in tissue distribution studies
title_short A novel method to quantify IRDye800CW fluorescent antibody probes ex vivo in tissue distribution studies
title_sort novel method to quantify irdye800cw fluorescent antibody probes ex vivo in tissue distribution studies
topic Original Research
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3519726/
https://www.ncbi.nlm.nih.gov/pubmed/23009555
http://dx.doi.org/10.1186/2191-219X-2-50
work_keys_str_mv AT oliveirasabrina anovelmethodtoquantifyirdye800cwfluorescentantibodyprobesexvivointissuedistributionstudies
AT cohenruth anovelmethodtoquantifyirdye800cwfluorescentantibodyprobesexvivointissuedistributionstudies
AT walsummarijkestigtervan anovelmethodtoquantifyirdye800cwfluorescentantibodyprobesexvivointissuedistributionstudies
AT vandongenguusams anovelmethodtoquantifyirdye800cwfluorescentantibodyprobesexvivointissuedistributionstudies
AT eliassjoerdg anovelmethodtoquantifyirdye800cwfluorescentantibodyprobesexvivointissuedistributionstudies
AT vandiestpaulj anovelmethodtoquantifyirdye800cwfluorescentantibodyprobesexvivointissuedistributionstudies
AT maliwillem anovelmethodtoquantifyirdye800cwfluorescentantibodyprobesexvivointissuedistributionstudies
AT vanbergenenhenegouwenpaulmp anovelmethodtoquantifyirdye800cwfluorescentantibodyprobesexvivointissuedistributionstudies
AT oliveirasabrina novelmethodtoquantifyirdye800cwfluorescentantibodyprobesexvivointissuedistributionstudies
AT cohenruth novelmethodtoquantifyirdye800cwfluorescentantibodyprobesexvivointissuedistributionstudies
AT walsummarijkestigtervan novelmethodtoquantifyirdye800cwfluorescentantibodyprobesexvivointissuedistributionstudies
AT vandongenguusams novelmethodtoquantifyirdye800cwfluorescentantibodyprobesexvivointissuedistributionstudies
AT eliassjoerdg novelmethodtoquantifyirdye800cwfluorescentantibodyprobesexvivointissuedistributionstudies
AT vandiestpaulj novelmethodtoquantifyirdye800cwfluorescentantibodyprobesexvivointissuedistributionstudies
AT maliwillem novelmethodtoquantifyirdye800cwfluorescentantibodyprobesexvivointissuedistributionstudies
AT vanbergenenhenegouwenpaulmp novelmethodtoquantifyirdye800cwfluorescentantibodyprobesexvivointissuedistributionstudies