Cargando…

Development and Evaluation of an (18)F-Radiolabeled Monocyclam Derivative for Imaging CXCR4 Expression

[Image: see text] In humans, C–X–C chemokine receptor type 4 (CXCR4) is a protein that is encoded by the CXCR4 gene and binds the ligand CXCL12 (also known as SDF-1). The CXCR4–CXCL12 interaction in cancer elicits biological activities that result in tumor progression and has accordingly been the su...

Descripción completa

Detalles Bibliográficos
Autores principales: Brickute, Diana, Braga, Marta, Kaliszczak, Maciej A., Barnes, Chris, Lau, Doreen, Carroll, Laurence, Stevens, Elizabeth, Trousil, Sebastian, Alam, Israt S., Nguyen, Quang-Dé, Aboagye, Eric O.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: American Chemical Society 2019
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6522096/
https://www.ncbi.nlm.nih.gov/pubmed/30883140
http://dx.doi.org/10.1021/acs.molpharmaceut.9b00069
_version_ 1783419074232975360
author Brickute, Diana
Braga, Marta
Kaliszczak, Maciej A.
Barnes, Chris
Lau, Doreen
Carroll, Laurence
Stevens, Elizabeth
Trousil, Sebastian
Alam, Israt S.
Nguyen, Quang-Dé
Aboagye, Eric O.
author_facet Brickute, Diana
Braga, Marta
Kaliszczak, Maciej A.
Barnes, Chris
Lau, Doreen
Carroll, Laurence
Stevens, Elizabeth
Trousil, Sebastian
Alam, Israt S.
Nguyen, Quang-Dé
Aboagye, Eric O.
author_sort Brickute, Diana
collection PubMed
description [Image: see text] In humans, C–X–C chemokine receptor type 4 (CXCR4) is a protein that is encoded by the CXCR4 gene and binds the ligand CXCL12 (also known as SDF-1). The CXCR4–CXCL12 interaction in cancer elicits biological activities that result in tumor progression and has accordingly been the subject of significant investigation for detection and treatment of the disease. Peptidic antagonists have been labeled with a variety of radioisotopes for the detection of CXCR4, but the methodology utilizing small molecules has predominantly used radiometals. We report here the development of a (18)F-radiolabeled cyclam-based small molecule radioprobe, [(18)F]MCFB, for imaging CXCR4 expression. The IC(50) value of [(19)F]MCFB for CXCR4 was similar to that of AMD3465 (111.3 and 89.8 nM, respectively). In vitro binding assays show that the tracer depicted a differential CXCR4 expression, which was blocked in the presence of AMD3465, demonstrating the specificity of [(18)F]MCFB. Positron emission tomography (PET) imaging studies showed a distinct uptake of the radioprobe in lymphoma and breast cancer xenografts. High liver and kidney uptakes were seen with [(18)F]MCFB, leading us to further examine the basis of its pharmacokinetics in relation to the tracer’s cationic nature and thus the role of organic cation transporters (OCTs). Substrate competition following the intravenous injection of metformin led to a marked decrease in the urinary excretion of [(18)F]MCFB, with moderate changes observed in other organs, including the liver. Our results suggest involvement of OCTs in the renal elimination of the tracer. In conclusion, the (18)F-radiolabeled monocyclam, [(18)F]MCFB, has potential to detect tumor CXCR4 in nonhepatic tissues.
format Online
Article
Text
id pubmed-6522096
institution National Center for Biotechnology Information
language English
publishDate 2019
publisher American Chemical Society
record_format MEDLINE/PubMed
spelling pubmed-65220962019-05-20 Development and Evaluation of an (18)F-Radiolabeled Monocyclam Derivative for Imaging CXCR4 Expression Brickute, Diana Braga, Marta Kaliszczak, Maciej A. Barnes, Chris Lau, Doreen Carroll, Laurence Stevens, Elizabeth Trousil, Sebastian Alam, Israt S. Nguyen, Quang-Dé Aboagye, Eric O. Mol Pharm [Image: see text] In humans, C–X–C chemokine receptor type 4 (CXCR4) is a protein that is encoded by the CXCR4 gene and binds the ligand CXCL12 (also known as SDF-1). The CXCR4–CXCL12 interaction in cancer elicits biological activities that result in tumor progression and has accordingly been the subject of significant investigation for detection and treatment of the disease. Peptidic antagonists have been labeled with a variety of radioisotopes for the detection of CXCR4, but the methodology utilizing small molecules has predominantly used radiometals. We report here the development of a (18)F-radiolabeled cyclam-based small molecule radioprobe, [(18)F]MCFB, for imaging CXCR4 expression. The IC(50) value of [(19)F]MCFB for CXCR4 was similar to that of AMD3465 (111.3 and 89.8 nM, respectively). In vitro binding assays show that the tracer depicted a differential CXCR4 expression, which was blocked in the presence of AMD3465, demonstrating the specificity of [(18)F]MCFB. Positron emission tomography (PET) imaging studies showed a distinct uptake of the radioprobe in lymphoma and breast cancer xenografts. High liver and kidney uptakes were seen with [(18)F]MCFB, leading us to further examine the basis of its pharmacokinetics in relation to the tracer’s cationic nature and thus the role of organic cation transporters (OCTs). Substrate competition following the intravenous injection of metformin led to a marked decrease in the urinary excretion of [(18)F]MCFB, with moderate changes observed in other organs, including the liver. Our results suggest involvement of OCTs in the renal elimination of the tracer. In conclusion, the (18)F-radiolabeled monocyclam, [(18)F]MCFB, has potential to detect tumor CXCR4 in nonhepatic tissues. American Chemical Society 2019-03-18 2019-05-06 /pmc/articles/PMC6522096/ /pubmed/30883140 http://dx.doi.org/10.1021/acs.molpharmaceut.9b00069 Text en Copyright © 2019 American Chemical Society This is an open access article published under a Creative Commons Attribution (CC-BY) License (http://pubs.acs.org/page/policy/authorchoice_ccby_termsofuse.html) , which permits unrestricted use, distribution and reproduction in any medium, provided the author and source are cited.
spellingShingle Brickute, Diana
Braga, Marta
Kaliszczak, Maciej A.
Barnes, Chris
Lau, Doreen
Carroll, Laurence
Stevens, Elizabeth
Trousil, Sebastian
Alam, Israt S.
Nguyen, Quang-Dé
Aboagye, Eric O.
Development and Evaluation of an (18)F-Radiolabeled Monocyclam Derivative for Imaging CXCR4 Expression
title Development and Evaluation of an (18)F-Radiolabeled Monocyclam Derivative for Imaging CXCR4 Expression
title_full Development and Evaluation of an (18)F-Radiolabeled Monocyclam Derivative for Imaging CXCR4 Expression
title_fullStr Development and Evaluation of an (18)F-Radiolabeled Monocyclam Derivative for Imaging CXCR4 Expression
title_full_unstemmed Development and Evaluation of an (18)F-Radiolabeled Monocyclam Derivative for Imaging CXCR4 Expression
title_short Development and Evaluation of an (18)F-Radiolabeled Monocyclam Derivative for Imaging CXCR4 Expression
title_sort development and evaluation of an (18)f-radiolabeled monocyclam derivative for imaging cxcr4 expression
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6522096/
https://www.ncbi.nlm.nih.gov/pubmed/30883140
http://dx.doi.org/10.1021/acs.molpharmaceut.9b00069
work_keys_str_mv AT brickutediana developmentandevaluationofan18fradiolabeledmonocyclamderivativeforimagingcxcr4expression
AT bragamarta developmentandevaluationofan18fradiolabeledmonocyclamderivativeforimagingcxcr4expression
AT kaliszczakmacieja developmentandevaluationofan18fradiolabeledmonocyclamderivativeforimagingcxcr4expression
AT barneschris developmentandevaluationofan18fradiolabeledmonocyclamderivativeforimagingcxcr4expression
AT laudoreen developmentandevaluationofan18fradiolabeledmonocyclamderivativeforimagingcxcr4expression
AT carrolllaurence developmentandevaluationofan18fradiolabeledmonocyclamderivativeforimagingcxcr4expression
AT stevenselizabeth developmentandevaluationofan18fradiolabeledmonocyclamderivativeforimagingcxcr4expression
AT trousilsebastian developmentandevaluationofan18fradiolabeledmonocyclamderivativeforimagingcxcr4expression
AT alamisrats developmentandevaluationofan18fradiolabeledmonocyclamderivativeforimagingcxcr4expression
AT nguyenquangde developmentandevaluationofan18fradiolabeledmonocyclamderivativeforimagingcxcr4expression
AT aboagyeerico developmentandevaluationofan18fradiolabeledmonocyclamderivativeforimagingcxcr4expression