Cargando…

Ultrasound-directed enzyme-prodrug therapy (UDEPT) using self-immolative doxorubicin derivatives

Background: Enzyme-activatable prodrugs are extensively employed in oncology and beyond. Because enzyme concentrations and their (sub)cellular compartmentalization are highly heterogeneous in different tumor types and patients, we propose ultrasound-directed enzyme-prodrug therapy (UDEPT) as a means...

Descripción completa

Detalles Bibliográficos
Autores principales: Roemhild, Karolin, Besse, Helena C., Wang, Bi, Peña, Quim, Sun, Qingxue, Omata, Daiki, Ozbakir, Burcin, Bos, Clemens, Scheeren, Hans W., Storm, Gert, Metselaar, Josbert M., Yu, Haijun, Knüchel-Clarke, Ruth, Kiessling, Fabian, Moonen, Chrit T.W., Deckers, Roel, Shi, Yang, Lammers, Twan
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Ivyspring International Publisher 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9254251/
https://www.ncbi.nlm.nih.gov/pubmed/35832083
http://dx.doi.org/10.7150/thno.69168
_version_ 1784740655760670720
author Roemhild, Karolin
Besse, Helena C.
Wang, Bi
Peña, Quim
Sun, Qingxue
Omata, Daiki
Ozbakir, Burcin
Bos, Clemens
Scheeren, Hans W.
Storm, Gert
Metselaar, Josbert M.
Yu, Haijun
Knüchel-Clarke, Ruth
Kiessling, Fabian
Moonen, Chrit T.W.
Deckers, Roel
Shi, Yang
Lammers, Twan
author_facet Roemhild, Karolin
Besse, Helena C.
Wang, Bi
Peña, Quim
Sun, Qingxue
Omata, Daiki
Ozbakir, Burcin
Bos, Clemens
Scheeren, Hans W.
Storm, Gert
Metselaar, Josbert M.
Yu, Haijun
Knüchel-Clarke, Ruth
Kiessling, Fabian
Moonen, Chrit T.W.
Deckers, Roel
Shi, Yang
Lammers, Twan
author_sort Roemhild, Karolin
collection PubMed
description Background: Enzyme-activatable prodrugs are extensively employed in oncology and beyond. Because enzyme concentrations and their (sub)cellular compartmentalization are highly heterogeneous in different tumor types and patients, we propose ultrasound-directed enzyme-prodrug therapy (UDEPT) as a means to increase enzyme access and availability for prodrug activation locally. Methods: We synthesized β-glucuronidase-sensitive self-immolative doxorubicin prodrugs with different spacer lengths between the active drug moiety and the capping group. We evaluated drug conversion, uptake and cytotoxicity in the presence and absence of the activating enzyme β-glucuronidase. To trigger the cell release of β-glucuronidase, we used high-intensity focused ultrasound to aid in the conversion of the prodrugs into their active counterparts. Results: More efficient enzymatic activation was observed for self-immolative prodrugs with more than one aromatic unit in the spacer. In the absence of β-glucuronidase, the prodrugs showed significantly reduced cellular uptake and cytotoxicity compared to the parent drug. High-intensity focused ultrasound-induced mechanical destruction of cancer cells resulted in release of intact β-glucuronidase, which activated the prodrugs, restored their cytotoxicity and induced immunogenic cell death. Conclusion: These findings shed new light on prodrug design and activation, and they contribute to novel UDEPT-based mechanochemical combination therapies for the treatment of cancer.
format Online
Article
Text
id pubmed-9254251
institution National Center for Biotechnology Information
language English
publishDate 2022
publisher Ivyspring International Publisher
record_format MEDLINE/PubMed
spelling pubmed-92542512022-07-12 Ultrasound-directed enzyme-prodrug therapy (UDEPT) using self-immolative doxorubicin derivatives Roemhild, Karolin Besse, Helena C. Wang, Bi Peña, Quim Sun, Qingxue Omata, Daiki Ozbakir, Burcin Bos, Clemens Scheeren, Hans W. Storm, Gert Metselaar, Josbert M. Yu, Haijun Knüchel-Clarke, Ruth Kiessling, Fabian Moonen, Chrit T.W. Deckers, Roel Shi, Yang Lammers, Twan Theranostics Research Paper Background: Enzyme-activatable prodrugs are extensively employed in oncology and beyond. Because enzyme concentrations and their (sub)cellular compartmentalization are highly heterogeneous in different tumor types and patients, we propose ultrasound-directed enzyme-prodrug therapy (UDEPT) as a means to increase enzyme access and availability for prodrug activation locally. Methods: We synthesized β-glucuronidase-sensitive self-immolative doxorubicin prodrugs with different spacer lengths between the active drug moiety and the capping group. We evaluated drug conversion, uptake and cytotoxicity in the presence and absence of the activating enzyme β-glucuronidase. To trigger the cell release of β-glucuronidase, we used high-intensity focused ultrasound to aid in the conversion of the prodrugs into their active counterparts. Results: More efficient enzymatic activation was observed for self-immolative prodrugs with more than one aromatic unit in the spacer. In the absence of β-glucuronidase, the prodrugs showed significantly reduced cellular uptake and cytotoxicity compared to the parent drug. High-intensity focused ultrasound-induced mechanical destruction of cancer cells resulted in release of intact β-glucuronidase, which activated the prodrugs, restored their cytotoxicity and induced immunogenic cell death. Conclusion: These findings shed new light on prodrug design and activation, and they contribute to novel UDEPT-based mechanochemical combination therapies for the treatment of cancer. Ivyspring International Publisher 2022-06-06 /pmc/articles/PMC9254251/ /pubmed/35832083 http://dx.doi.org/10.7150/thno.69168 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
Roemhild, Karolin
Besse, Helena C.
Wang, Bi
Peña, Quim
Sun, Qingxue
Omata, Daiki
Ozbakir, Burcin
Bos, Clemens
Scheeren, Hans W.
Storm, Gert
Metselaar, Josbert M.
Yu, Haijun
Knüchel-Clarke, Ruth
Kiessling, Fabian
Moonen, Chrit T.W.
Deckers, Roel
Shi, Yang
Lammers, Twan
Ultrasound-directed enzyme-prodrug therapy (UDEPT) using self-immolative doxorubicin derivatives
title Ultrasound-directed enzyme-prodrug therapy (UDEPT) using self-immolative doxorubicin derivatives
title_full Ultrasound-directed enzyme-prodrug therapy (UDEPT) using self-immolative doxorubicin derivatives
title_fullStr Ultrasound-directed enzyme-prodrug therapy (UDEPT) using self-immolative doxorubicin derivatives
title_full_unstemmed Ultrasound-directed enzyme-prodrug therapy (UDEPT) using self-immolative doxorubicin derivatives
title_short Ultrasound-directed enzyme-prodrug therapy (UDEPT) using self-immolative doxorubicin derivatives
title_sort ultrasound-directed enzyme-prodrug therapy (udept) using self-immolative doxorubicin derivatives
topic Research Paper
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9254251/
https://www.ncbi.nlm.nih.gov/pubmed/35832083
http://dx.doi.org/10.7150/thno.69168
work_keys_str_mv AT roemhildkarolin ultrasounddirectedenzymeprodrugtherapyudeptusingselfimmolativedoxorubicinderivatives
AT bessehelenac ultrasounddirectedenzymeprodrugtherapyudeptusingselfimmolativedoxorubicinderivatives
AT wangbi ultrasounddirectedenzymeprodrugtherapyudeptusingselfimmolativedoxorubicinderivatives
AT penaquim ultrasounddirectedenzymeprodrugtherapyudeptusingselfimmolativedoxorubicinderivatives
AT sunqingxue ultrasounddirectedenzymeprodrugtherapyudeptusingselfimmolativedoxorubicinderivatives
AT omatadaiki ultrasounddirectedenzymeprodrugtherapyudeptusingselfimmolativedoxorubicinderivatives
AT ozbakirburcin ultrasounddirectedenzymeprodrugtherapyudeptusingselfimmolativedoxorubicinderivatives
AT bosclemens ultrasounddirectedenzymeprodrugtherapyudeptusingselfimmolativedoxorubicinderivatives
AT scheerenhansw ultrasounddirectedenzymeprodrugtherapyudeptusingselfimmolativedoxorubicinderivatives
AT stormgert ultrasounddirectedenzymeprodrugtherapyudeptusingselfimmolativedoxorubicinderivatives
AT metselaarjosbertm ultrasounddirectedenzymeprodrugtherapyudeptusingselfimmolativedoxorubicinderivatives
AT yuhaijun ultrasounddirectedenzymeprodrugtherapyudeptusingselfimmolativedoxorubicinderivatives
AT knuchelclarkeruth ultrasounddirectedenzymeprodrugtherapyudeptusingselfimmolativedoxorubicinderivatives
AT kiesslingfabian ultrasounddirectedenzymeprodrugtherapyudeptusingselfimmolativedoxorubicinderivatives
AT moonenchrittw ultrasounddirectedenzymeprodrugtherapyudeptusingselfimmolativedoxorubicinderivatives
AT deckersroel ultrasounddirectedenzymeprodrugtherapyudeptusingselfimmolativedoxorubicinderivatives
AT shiyang ultrasounddirectedenzymeprodrugtherapyudeptusingselfimmolativedoxorubicinderivatives
AT lammerstwan ultrasounddirectedenzymeprodrugtherapyudeptusingselfimmolativedoxorubicinderivatives