Cargando…

Covalent core-radiolabeling of polymeric micelles with (125)I/(211)At for theranostic radiotherapy

Astatine-211 ((211)At) is one of the most promising α-emitters for targeted alpha therapy, especially of cancer metastases. However, the lack of a stable isotope, frequent in vivo deastatination, and limited radiochemical knowledge makes it challenging to apply. Here, we report a new strategy for ra...

Descripción completa

Detalles Bibliográficos
Autores principales: Sporer, Emanuel, Poulie, Christian B. M., Bäck, Tom, Lindegren, Sture, Jensen, Holger, Kempen, Paul J., Kjaer, Andreas, Herth, Matthias M., Jensen, Andreas I.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Ivyspring International Publisher 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9330252/
https://www.ncbi.nlm.nih.gov/pubmed/35912139
http://dx.doi.org/10.7150/ntno.71906
_version_ 1784758117353914368
author Sporer, Emanuel
Poulie, Christian B. M.
Bäck, Tom
Lindegren, Sture
Jensen, Holger
Kempen, Paul J.
Kjaer, Andreas
Herth, Matthias M.
Jensen, Andreas I.
author_facet Sporer, Emanuel
Poulie, Christian B. M.
Bäck, Tom
Lindegren, Sture
Jensen, Holger
Kempen, Paul J.
Kjaer, Andreas
Herth, Matthias M.
Jensen, Andreas I.
author_sort Sporer, Emanuel
collection PubMed
description Astatine-211 ((211)At) is one of the most promising α-emitters for targeted alpha therapy, especially of cancer metastases. However, the lack of a stable isotope, frequent in vivo deastatination, and limited radiochemical knowledge makes it challenging to apply. Here, we report a new strategy for radiolabeling the lipophilic core of polymeric micelles (PMs) with covalently bound (211)At. The PMs were radiolabeled via either an indirect synthon-based method or directly on the amphipathic block copolymer. The radiochemistry was optimized with iodine-125 ((125)I) and then adapted for (211)At, enabling the use of both elements as a potential theranostic pair. PMs that were core-radiolabeled with both (125)I or (211)At were prepared and characterized, based on a PEG(5k)-PLGA(10k) co-polymer. The stability of the radiolabeled PMs was evaluated in mouse serum for 21 h, showing radiochemical stability above 85%. After in vivo evaluation of the (211)At- labeled PMs, 4-5 % ID/g of the (211)At could still be detected in the blood, showing a promising in vivo stability of the PMs. Further, (211)At-labeled PMs accumulated in the spleen (20-30 %ID/g) and the liver (2.5- 5.5 %ID/g), along with some detection of (211)At in the thyroid (3.5-9 %ID/g). This led to the hypothesis that deastatination takes place in the liver, whereas good stability of the (211)At core-radiolabel was observed in the blood.
format Online
Article
Text
id pubmed-9330252
institution National Center for Biotechnology Information
language English
publishDate 2022
publisher Ivyspring International Publisher
record_format MEDLINE/PubMed
spelling pubmed-93302522022-07-28 Covalent core-radiolabeling of polymeric micelles with (125)I/(211)At for theranostic radiotherapy Sporer, Emanuel Poulie, Christian B. M. Bäck, Tom Lindegren, Sture Jensen, Holger Kempen, Paul J. Kjaer, Andreas Herth, Matthias M. Jensen, Andreas I. Nanotheranostics Research Paper Astatine-211 ((211)At) is one of the most promising α-emitters for targeted alpha therapy, especially of cancer metastases. However, the lack of a stable isotope, frequent in vivo deastatination, and limited radiochemical knowledge makes it challenging to apply. Here, we report a new strategy for radiolabeling the lipophilic core of polymeric micelles (PMs) with covalently bound (211)At. The PMs were radiolabeled via either an indirect synthon-based method or directly on the amphipathic block copolymer. The radiochemistry was optimized with iodine-125 ((125)I) and then adapted for (211)At, enabling the use of both elements as a potential theranostic pair. PMs that were core-radiolabeled with both (125)I or (211)At were prepared and characterized, based on a PEG(5k)-PLGA(10k) co-polymer. The stability of the radiolabeled PMs was evaluated in mouse serum for 21 h, showing radiochemical stability above 85%. After in vivo evaluation of the (211)At- labeled PMs, 4-5 % ID/g of the (211)At could still be detected in the blood, showing a promising in vivo stability of the PMs. Further, (211)At-labeled PMs accumulated in the spleen (20-30 %ID/g) and the liver (2.5- 5.5 %ID/g), along with some detection of (211)At in the thyroid (3.5-9 %ID/g). This led to the hypothesis that deastatination takes place in the liver, whereas good stability of the (211)At core-radiolabel was observed in the blood. Ivyspring International Publisher 2022-07-18 /pmc/articles/PMC9330252/ /pubmed/35912139 http://dx.doi.org/10.7150/ntno.71906 Text en © The author(s) https://creativecommons.org/licenses/by/4.0/This is an open access article distributed under the terms of the Creative Commons Attribution License (https://creativecommons.org/licenses/by/4.0/). See http://ivyspring.com/terms for full terms and conditions.
spellingShingle Research Paper
Sporer, Emanuel
Poulie, Christian B. M.
Bäck, Tom
Lindegren, Sture
Jensen, Holger
Kempen, Paul J.
Kjaer, Andreas
Herth, Matthias M.
Jensen, Andreas I.
Covalent core-radiolabeling of polymeric micelles with (125)I/(211)At for theranostic radiotherapy
title Covalent core-radiolabeling of polymeric micelles with (125)I/(211)At for theranostic radiotherapy
title_full Covalent core-radiolabeling of polymeric micelles with (125)I/(211)At for theranostic radiotherapy
title_fullStr Covalent core-radiolabeling of polymeric micelles with (125)I/(211)At for theranostic radiotherapy
title_full_unstemmed Covalent core-radiolabeling of polymeric micelles with (125)I/(211)At for theranostic radiotherapy
title_short Covalent core-radiolabeling of polymeric micelles with (125)I/(211)At for theranostic radiotherapy
title_sort covalent core-radiolabeling of polymeric micelles with (125)i/(211)at for theranostic radiotherapy
topic Research Paper
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9330252/
https://www.ncbi.nlm.nih.gov/pubmed/35912139
http://dx.doi.org/10.7150/ntno.71906
work_keys_str_mv AT sporeremanuel covalentcoreradiolabelingofpolymericmicelleswith125i211atfortheranosticradiotherapy
AT pouliechristianbm covalentcoreradiolabelingofpolymericmicelleswith125i211atfortheranosticradiotherapy
AT backtom covalentcoreradiolabelingofpolymericmicelleswith125i211atfortheranosticradiotherapy
AT lindegrensture covalentcoreradiolabelingofpolymericmicelleswith125i211atfortheranosticradiotherapy
AT jensenholger covalentcoreradiolabelingofpolymericmicelleswith125i211atfortheranosticradiotherapy
AT kempenpaulj covalentcoreradiolabelingofpolymericmicelleswith125i211atfortheranosticradiotherapy
AT kjaerandreas covalentcoreradiolabelingofpolymericmicelleswith125i211atfortheranosticradiotherapy
AT herthmatthiasm covalentcoreradiolabelingofpolymericmicelleswith125i211atfortheranosticradiotherapy
AT jensenandreasi covalentcoreradiolabelingofpolymericmicelleswith125i211atfortheranosticradiotherapy