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Imaging of carbonic anhydrase IX with an (111)In-labeled dual-motif inhibitor

We developed a new scaffold for radionuclide-based imaging and therapy of clear cell renal cell carcinoma (ccRCC) targeting carbonic anhydrase IX (CAIX). Compound XYIMSR-01, a DOTA-conjugated, bivalent, low-molecular-weight ligand, has two moieties that target two separate sites on CAIX, imparting h...

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Autores principales: Yang, Xing, Minn, Il, Rowe, Steven P., Banerjee, Sangeeta Ray, Gorin, Michael A., Brummet, Mary, Lee, Hye Soo, Koo, Soo Min, Sysa-Shah, Polina, Mease, Ronnie C., Nimmagadda, Sridhar, Allaf, Mohamad E., Pomper, Martin G.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Impact Journals LLC 2015
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4741798/
https://www.ncbi.nlm.nih.gov/pubmed/26418876
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author Yang, Xing
Minn, Il
Rowe, Steven P.
Banerjee, Sangeeta Ray
Gorin, Michael A.
Brummet, Mary
Lee, Hye Soo
Koo, Soo Min
Sysa-Shah, Polina
Mease, Ronnie C.
Nimmagadda, Sridhar
Allaf, Mohamad E.
Pomper, Martin G.
author_facet Yang, Xing
Minn, Il
Rowe, Steven P.
Banerjee, Sangeeta Ray
Gorin, Michael A.
Brummet, Mary
Lee, Hye Soo
Koo, Soo Min
Sysa-Shah, Polina
Mease, Ronnie C.
Nimmagadda, Sridhar
Allaf, Mohamad E.
Pomper, Martin G.
author_sort Yang, Xing
collection PubMed
description We developed a new scaffold for radionuclide-based imaging and therapy of clear cell renal cell carcinoma (ccRCC) targeting carbonic anhydrase IX (CAIX). Compound XYIMSR-01, a DOTA-conjugated, bivalent, low-molecular-weight ligand, has two moieties that target two separate sites on CAIX, imparting high affinity. We synthesized [(111)In]XYIMSR-01 in 73.8–75.8% (n = 3) yield with specific radioactivities ranging from 118 – 1,021 GBq/μmol (3,200–27,600 Ci/mmol). Single photon emission computed tomography of [(111)In]XYIMSR-01 in immunocompromised mice bearing CAIX-expressing SK-RC-52 tumors revealed radiotracer uptake in tumor as early as 1 h post-injection. Biodistribution studies demonstrated 26% injected dose per gram of radioactivity within tumor at 1 h. Tumor-to-blood, muscle and kidney ratios were 178.1 ± 145.4, 68.4 ± 29.0 and 1.7 ± 1.2, respectively, at 24 h post-injection. Retention of radioactivity was exclusively observed in tumors by 48 h, the latest time point evaluated. The dual targeting strategy to engage CAIX enabled specific detection of ccRCC in this xenograft model, with pharmacokinetics surpassing those of previously described radionuclide-based probes against CAIX.
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spelling pubmed-47417982016-03-11 Imaging of carbonic anhydrase IX with an (111)In-labeled dual-motif inhibitor Yang, Xing Minn, Il Rowe, Steven P. Banerjee, Sangeeta Ray Gorin, Michael A. Brummet, Mary Lee, Hye Soo Koo, Soo Min Sysa-Shah, Polina Mease, Ronnie C. Nimmagadda, Sridhar Allaf, Mohamad E. Pomper, Martin G. Oncotarget Research Paper We developed a new scaffold for radionuclide-based imaging and therapy of clear cell renal cell carcinoma (ccRCC) targeting carbonic anhydrase IX (CAIX). Compound XYIMSR-01, a DOTA-conjugated, bivalent, low-molecular-weight ligand, has two moieties that target two separate sites on CAIX, imparting high affinity. We synthesized [(111)In]XYIMSR-01 in 73.8–75.8% (n = 3) yield with specific radioactivities ranging from 118 – 1,021 GBq/μmol (3,200–27,600 Ci/mmol). Single photon emission computed tomography of [(111)In]XYIMSR-01 in immunocompromised mice bearing CAIX-expressing SK-RC-52 tumors revealed radiotracer uptake in tumor as early as 1 h post-injection. Biodistribution studies demonstrated 26% injected dose per gram of radioactivity within tumor at 1 h. Tumor-to-blood, muscle and kidney ratios were 178.1 ± 145.4, 68.4 ± 29.0 and 1.7 ± 1.2, respectively, at 24 h post-injection. Retention of radioactivity was exclusively observed in tumors by 48 h, the latest time point evaluated. The dual targeting strategy to engage CAIX enabled specific detection of ccRCC in this xenograft model, with pharmacokinetics surpassing those of previously described radionuclide-based probes against CAIX. Impact Journals LLC 2015-09-16 /pmc/articles/PMC4741798/ /pubmed/26418876 Text en Copyright: © 2015 Yang et al. http://creativecommons.org/licenses/by/2.5/ This is an open-access article distributed under the terms of the Creative Commons Attribution License, which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are credited.
spellingShingle Research Paper
Yang, Xing
Minn, Il
Rowe, Steven P.
Banerjee, Sangeeta Ray
Gorin, Michael A.
Brummet, Mary
Lee, Hye Soo
Koo, Soo Min
Sysa-Shah, Polina
Mease, Ronnie C.
Nimmagadda, Sridhar
Allaf, Mohamad E.
Pomper, Martin G.
Imaging of carbonic anhydrase IX with an (111)In-labeled dual-motif inhibitor
title Imaging of carbonic anhydrase IX with an (111)In-labeled dual-motif inhibitor
title_full Imaging of carbonic anhydrase IX with an (111)In-labeled dual-motif inhibitor
title_fullStr Imaging of carbonic anhydrase IX with an (111)In-labeled dual-motif inhibitor
title_full_unstemmed Imaging of carbonic anhydrase IX with an (111)In-labeled dual-motif inhibitor
title_short Imaging of carbonic anhydrase IX with an (111)In-labeled dual-motif inhibitor
title_sort imaging of carbonic anhydrase ix with an (111)in-labeled dual-motif inhibitor
topic Research Paper
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4741798/
https://www.ncbi.nlm.nih.gov/pubmed/26418876
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