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Development of prostate specific membrane antigen targeted ultrasound microbubbles using bioorthogonal chemistry

Prostate specific membrane antigen (PSMA) targeted microbubbles (MBs) were developed using bioorthogonal chemistry. Streptavidin-labeled MBs were treated with a biotinylated tetrazine (MB(Tz)) and targeted to PSMA expressing cells using trans-cyclooctene (TCO)-functionalized anti-PSMA antibodies (TC...

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Autores principales: Zlitni, Aimen, Yin, Melissa, Janzen, Nancy, Chatterjee, Samit, Lisok, Ala, Gabrielson, Kathleen L., Nimmagadda, Sridhar, Pomper, Martin G., Foster, F. Stuart, Valliant, John F.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2017
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5417523/
https://www.ncbi.nlm.nih.gov/pubmed/28472168
http://dx.doi.org/10.1371/journal.pone.0176958
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author Zlitni, Aimen
Yin, Melissa
Janzen, Nancy
Chatterjee, Samit
Lisok, Ala
Gabrielson, Kathleen L.
Nimmagadda, Sridhar
Pomper, Martin G.
Foster, F. Stuart
Valliant, John F.
author_facet Zlitni, Aimen
Yin, Melissa
Janzen, Nancy
Chatterjee, Samit
Lisok, Ala
Gabrielson, Kathleen L.
Nimmagadda, Sridhar
Pomper, Martin G.
Foster, F. Stuart
Valliant, John F.
author_sort Zlitni, Aimen
collection PubMed
description Prostate specific membrane antigen (PSMA) targeted microbubbles (MBs) were developed using bioorthogonal chemistry. Streptavidin-labeled MBs were treated with a biotinylated tetrazine (MB(Tz)) and targeted to PSMA expressing cells using trans-cyclooctene (TCO)-functionalized anti-PSMA antibodies (TCO-anti-PSMA). The extent of MB binding to PSMA positive cells for two different targeting strategies was determined using an in vitro flow chamber. The initial approach involved pretargeting, where TCO-anti-PSMA was first incubated with PSMA expressing cells and followed by MB(Tz), which subsequently showed a 2.8 fold increase in the number of bound MBs compared to experiments performed in the absence of TCO-anti-PSMA. Using direct targeting, where TCO-anti-PSMA was linked to MB(Tz) prior to initiation of the assay, a 5-fold increase in binding compared to controls was observed. The direct targeting approach was subsequently evaluated in vivo using a human xenograft tumor model and two different PSMA-targeting antibodies. The US signal enhancements observed were 1.6- and 5.9-fold greater than that for non-targeted MBs. The lead construct was also evaluated in a head-to-head study using mice bearing both PSMA positive or negative tumors in separate limbs. The human PSMA expressing tumors exhibited a 2-fold higher US signal compared to those tumors deficient in human PSMA. The results demonstrate both the feasibility of preparing PSMA-targeted MBs and the benefits of using bioorthogonal chemistry to create targeted US probes.
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spelling pubmed-54175232017-05-14 Development of prostate specific membrane antigen targeted ultrasound microbubbles using bioorthogonal chemistry Zlitni, Aimen Yin, Melissa Janzen, Nancy Chatterjee, Samit Lisok, Ala Gabrielson, Kathleen L. Nimmagadda, Sridhar Pomper, Martin G. Foster, F. Stuart Valliant, John F. PLoS One Research Article Prostate specific membrane antigen (PSMA) targeted microbubbles (MBs) were developed using bioorthogonal chemistry. Streptavidin-labeled MBs were treated with a biotinylated tetrazine (MB(Tz)) and targeted to PSMA expressing cells using trans-cyclooctene (TCO)-functionalized anti-PSMA antibodies (TCO-anti-PSMA). The extent of MB binding to PSMA positive cells for two different targeting strategies was determined using an in vitro flow chamber. The initial approach involved pretargeting, where TCO-anti-PSMA was first incubated with PSMA expressing cells and followed by MB(Tz), which subsequently showed a 2.8 fold increase in the number of bound MBs compared to experiments performed in the absence of TCO-anti-PSMA. Using direct targeting, where TCO-anti-PSMA was linked to MB(Tz) prior to initiation of the assay, a 5-fold increase in binding compared to controls was observed. The direct targeting approach was subsequently evaluated in vivo using a human xenograft tumor model and two different PSMA-targeting antibodies. The US signal enhancements observed were 1.6- and 5.9-fold greater than that for non-targeted MBs. The lead construct was also evaluated in a head-to-head study using mice bearing both PSMA positive or negative tumors in separate limbs. The human PSMA expressing tumors exhibited a 2-fold higher US signal compared to those tumors deficient in human PSMA. The results demonstrate both the feasibility of preparing PSMA-targeted MBs and the benefits of using bioorthogonal chemistry to create targeted US probes. Public Library of Science 2017-05-04 /pmc/articles/PMC5417523/ /pubmed/28472168 http://dx.doi.org/10.1371/journal.pone.0176958 Text en © 2017 Zlitni et al http://creativecommons.org/licenses/by/4.0/ This is an open access article distributed under the terms of the Creative Commons Attribution License (http://creativecommons.org/licenses/by/4.0/) , which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are credited.
spellingShingle Research Article
Zlitni, Aimen
Yin, Melissa
Janzen, Nancy
Chatterjee, Samit
Lisok, Ala
Gabrielson, Kathleen L.
Nimmagadda, Sridhar
Pomper, Martin G.
Foster, F. Stuart
Valliant, John F.
Development of prostate specific membrane antigen targeted ultrasound microbubbles using bioorthogonal chemistry
title Development of prostate specific membrane antigen targeted ultrasound microbubbles using bioorthogonal chemistry
title_full Development of prostate specific membrane antigen targeted ultrasound microbubbles using bioorthogonal chemistry
title_fullStr Development of prostate specific membrane antigen targeted ultrasound microbubbles using bioorthogonal chemistry
title_full_unstemmed Development of prostate specific membrane antigen targeted ultrasound microbubbles using bioorthogonal chemistry
title_short Development of prostate specific membrane antigen targeted ultrasound microbubbles using bioorthogonal chemistry
title_sort development of prostate specific membrane antigen targeted ultrasound microbubbles using bioorthogonal chemistry
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5417523/
https://www.ncbi.nlm.nih.gov/pubmed/28472168
http://dx.doi.org/10.1371/journal.pone.0176958
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