Cargando…
Activated Platelets in Carotid Artery Thrombosis in Mice Can Be Selectively Targeted with a Radiolabeled Single-Chain Antibody
BACKGROUND: Activated platelets can be found on the surface of inflamed, rupture-prone and ruptured plaques as well as in intravascular thrombosis. They are key players in thrombosis and atherosclerosis. In this study we describe the construction of a radiolabeled single-chain antibody targeting the...
Autores principales: | , , , , , , , , , , , , |
---|---|
Formato: | Texto |
Lenguaje: | English |
Publicado: |
Public Library of Science
2011
|
Materias: | |
Acceso en línea: | https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3068185/ https://www.ncbi.nlm.nih.gov/pubmed/21479193 http://dx.doi.org/10.1371/journal.pone.0018446 |
_version_ | 1782201203763970048 |
---|---|
author | Heidt, Timo Deininger, Friederike Peter, Karlheinz Goldschmidt, Jürgen Pethe, Annette Hagemeyer, Christoph E. Neudorfer, Irene Zirlik, Andreas Weber, Wolfgang A. Bode, Christoph Meyer, Philipp T. Behe, Martin von zur Mühlen, Constantin |
author_facet | Heidt, Timo Deininger, Friederike Peter, Karlheinz Goldschmidt, Jürgen Pethe, Annette Hagemeyer, Christoph E. Neudorfer, Irene Zirlik, Andreas Weber, Wolfgang A. Bode, Christoph Meyer, Philipp T. Behe, Martin von zur Mühlen, Constantin |
author_sort | Heidt, Timo |
collection | PubMed |
description | BACKGROUND: Activated platelets can be found on the surface of inflamed, rupture-prone and ruptured plaques as well as in intravascular thrombosis. They are key players in thrombosis and atherosclerosis. In this study we describe the construction of a radiolabeled single-chain antibody targeting the LIBS-epitope of activated platelets to selectively depict platelet activation and wall-adherent non-occlusive thrombosis in a mouse model with nuclear imaging using in vitro and ex vivo autoradiography as well as small animal SPECT-CT for in vivo analysis. METHODOLOGY/PRINCIPAL FINDINGS: LIBS as well as an unspecific control single-chain antibody were labeled with (111)Indium ((111)In) via bifunctional DTPA ( = (111)In-LIBS/(111)In-control). Autoradiography after incubation with (111)In-LIBS on activated platelets in vitro (mean 3866±28 DLU/mm(2), 4010±630 DLU/mm(2) and 4520±293 DLU/mm(2)) produced a significantly higher ligand uptake compared to (111)In-control (2101±76 DLU/mm(2), 1181±96 DLU/mm(2) and 1866±246 DLU/mm(2)) indicating a specific binding to activated platelets; P<0.05. Applying these findings to an ex vivo mouse model of carotid artery thrombosis revealed a significant increase in ligand uptake after injection of (111)In-LIBS in the presence of small thrombi compared to the non-injured side, as confirmed by histology (49630±10650 DLU/mm(2) vs. 17390±7470 DLU/mm(2); P<0.05). These findings could also be reproduced in vivo. SPECT-CT analysis of the injured carotid artery with (111)In-LIBS resulted in a significant increase of the target-to-background ratio compared to (111)In-control (1.99±0.36 vs. 1.1±0.24; P<0.01). CONCLUSIONS/SIGNIFICANCE: Nuclear imaging with (111)In-LIBS allows the detection of platelet activation in vitro and ex vivo with high sensitivity. Using SPECT-CT, wall-adherent activated platelets in carotid arteries could be depicted in vivo. These results encourage further studies elucidating the role of activated platelets in plaque pathology and atherosclerosis and might be of interest for further developments towards clinical application. |
format | Text |
id | pubmed-3068185 |
institution | National Center for Biotechnology Information |
language | English |
publishDate | 2011 |
publisher | Public Library of Science |
record_format | MEDLINE/PubMed |
spelling | pubmed-30681852011-04-08 Activated Platelets in Carotid Artery Thrombosis in Mice Can Be Selectively Targeted with a Radiolabeled Single-Chain Antibody Heidt, Timo Deininger, Friederike Peter, Karlheinz Goldschmidt, Jürgen Pethe, Annette Hagemeyer, Christoph E. Neudorfer, Irene Zirlik, Andreas Weber, Wolfgang A. Bode, Christoph Meyer, Philipp T. Behe, Martin von zur Mühlen, Constantin PLoS One Research Article BACKGROUND: Activated platelets can be found on the surface of inflamed, rupture-prone and ruptured plaques as well as in intravascular thrombosis. They are key players in thrombosis and atherosclerosis. In this study we describe the construction of a radiolabeled single-chain antibody targeting the LIBS-epitope of activated platelets to selectively depict platelet activation and wall-adherent non-occlusive thrombosis in a mouse model with nuclear imaging using in vitro and ex vivo autoradiography as well as small animal SPECT-CT for in vivo analysis. METHODOLOGY/PRINCIPAL FINDINGS: LIBS as well as an unspecific control single-chain antibody were labeled with (111)Indium ((111)In) via bifunctional DTPA ( = (111)In-LIBS/(111)In-control). Autoradiography after incubation with (111)In-LIBS on activated platelets in vitro (mean 3866±28 DLU/mm(2), 4010±630 DLU/mm(2) and 4520±293 DLU/mm(2)) produced a significantly higher ligand uptake compared to (111)In-control (2101±76 DLU/mm(2), 1181±96 DLU/mm(2) and 1866±246 DLU/mm(2)) indicating a specific binding to activated platelets; P<0.05. Applying these findings to an ex vivo mouse model of carotid artery thrombosis revealed a significant increase in ligand uptake after injection of (111)In-LIBS in the presence of small thrombi compared to the non-injured side, as confirmed by histology (49630±10650 DLU/mm(2) vs. 17390±7470 DLU/mm(2); P<0.05). These findings could also be reproduced in vivo. SPECT-CT analysis of the injured carotid artery with (111)In-LIBS resulted in a significant increase of the target-to-background ratio compared to (111)In-control (1.99±0.36 vs. 1.1±0.24; P<0.01). CONCLUSIONS/SIGNIFICANCE: Nuclear imaging with (111)In-LIBS allows the detection of platelet activation in vitro and ex vivo with high sensitivity. Using SPECT-CT, wall-adherent activated platelets in carotid arteries could be depicted in vivo. These results encourage further studies elucidating the role of activated platelets in plaque pathology and atherosclerosis and might be of interest for further developments towards clinical application. Public Library of Science 2011-03-30 /pmc/articles/PMC3068185/ /pubmed/21479193 http://dx.doi.org/10.1371/journal.pone.0018446 Text en Heidt 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, which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are properly credited. |
spellingShingle | Research Article Heidt, Timo Deininger, Friederike Peter, Karlheinz Goldschmidt, Jürgen Pethe, Annette Hagemeyer, Christoph E. Neudorfer, Irene Zirlik, Andreas Weber, Wolfgang A. Bode, Christoph Meyer, Philipp T. Behe, Martin von zur Mühlen, Constantin Activated Platelets in Carotid Artery Thrombosis in Mice Can Be Selectively Targeted with a Radiolabeled Single-Chain Antibody |
title | Activated Platelets in Carotid Artery Thrombosis in Mice Can Be
Selectively Targeted with a Radiolabeled Single-Chain Antibody |
title_full | Activated Platelets in Carotid Artery Thrombosis in Mice Can Be
Selectively Targeted with a Radiolabeled Single-Chain Antibody |
title_fullStr | Activated Platelets in Carotid Artery Thrombosis in Mice Can Be
Selectively Targeted with a Radiolabeled Single-Chain Antibody |
title_full_unstemmed | Activated Platelets in Carotid Artery Thrombosis in Mice Can Be
Selectively Targeted with a Radiolabeled Single-Chain Antibody |
title_short | Activated Platelets in Carotid Artery Thrombosis in Mice Can Be
Selectively Targeted with a Radiolabeled Single-Chain Antibody |
title_sort | activated platelets in carotid artery thrombosis in mice can be
selectively targeted with a radiolabeled single-chain antibody |
topic | Research Article |
url | https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3068185/ https://www.ncbi.nlm.nih.gov/pubmed/21479193 http://dx.doi.org/10.1371/journal.pone.0018446 |
work_keys_str_mv | AT heidttimo activatedplateletsincarotidarterythrombosisinmicecanbeselectivelytargetedwitharadiolabeledsinglechainantibody AT deiningerfriederike activatedplateletsincarotidarterythrombosisinmicecanbeselectivelytargetedwitharadiolabeledsinglechainantibody AT peterkarlheinz activatedplateletsincarotidarterythrombosisinmicecanbeselectivelytargetedwitharadiolabeledsinglechainantibody AT goldschmidtjurgen activatedplateletsincarotidarterythrombosisinmicecanbeselectivelytargetedwitharadiolabeledsinglechainantibody AT petheannette activatedplateletsincarotidarterythrombosisinmicecanbeselectivelytargetedwitharadiolabeledsinglechainantibody AT hagemeyerchristophe activatedplateletsincarotidarterythrombosisinmicecanbeselectivelytargetedwitharadiolabeledsinglechainantibody AT neudorferirene activatedplateletsincarotidarterythrombosisinmicecanbeselectivelytargetedwitharadiolabeledsinglechainantibody AT zirlikandreas activatedplateletsincarotidarterythrombosisinmicecanbeselectivelytargetedwitharadiolabeledsinglechainantibody AT weberwolfganga activatedplateletsincarotidarterythrombosisinmicecanbeselectivelytargetedwitharadiolabeledsinglechainantibody AT bodechristoph activatedplateletsincarotidarterythrombosisinmicecanbeselectivelytargetedwitharadiolabeledsinglechainantibody AT meyerphilippt activatedplateletsincarotidarterythrombosisinmicecanbeselectivelytargetedwitharadiolabeledsinglechainantibody AT behemartin activatedplateletsincarotidarterythrombosisinmicecanbeselectivelytargetedwitharadiolabeledsinglechainantibody AT vonzurmuhlenconstantin activatedplateletsincarotidarterythrombosisinmicecanbeselectivelytargetedwitharadiolabeledsinglechainantibody |