Cargando…

Intelligent design of polymer nanogels for full-process sensitized radiotherapy and dual-mode computed tomography/magnetic resonance imaging of tumors

Rationale: Development of intelligent radiosensitization nanoplatforms for imaging-guided tumor radiotherapy (RT) remains challenging. We report here the construction of an intelligent nanoplatform based on poly(N-vinylcaprolactam) (PVCL) nanogels (NGs) co-loaded with gold (Au) and manganese dioxide...

Descripción completa

Detalles Bibliográficos
Autores principales: Zhang, Changchang, Tu, Wenzhi, Chen, Xuming, Xu, Bing, Li, Xin, Hu, Chaolei, Shen, Mingwu, Song, Shaoli, Jiang, Chunjuan, Yao, Shengyu, Pich, Andrij, Liu, Yong, Shi, Xiangyang
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Ivyspring International Publisher 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9065179/
https://www.ncbi.nlm.nih.gov/pubmed/35547775
http://dx.doi.org/10.7150/thno.70346
_version_ 1784699529176547328
author Zhang, Changchang
Tu, Wenzhi
Chen, Xuming
Xu, Bing
Li, Xin
Hu, Chaolei
Shen, Mingwu
Song, Shaoli
Jiang, Chunjuan
Yao, Shengyu
Pich, Andrij
Liu, Yong
Shi, Xiangyang
author_facet Zhang, Changchang
Tu, Wenzhi
Chen, Xuming
Xu, Bing
Li, Xin
Hu, Chaolei
Shen, Mingwu
Song, Shaoli
Jiang, Chunjuan
Yao, Shengyu
Pich, Andrij
Liu, Yong
Shi, Xiangyang
author_sort Zhang, Changchang
collection PubMed
description Rationale: Development of intelligent radiosensitization nanoplatforms for imaging-guided tumor radiotherapy (RT) remains challenging. We report here the construction of an intelligent nanoplatform based on poly(N-vinylcaprolactam) (PVCL) nanogels (NGs) co-loaded with gold (Au) and manganese dioxide (MnO(2)) nanoparticles (NPs) for dual-mode computed tomography (CT)/magnetic resonance (MR) imaging-guided “full-process” sensitized RT of tumors. Methods: PVCL NGs were synthesized via precipitation polymerization and in situ loaded with Au and MnO(2) NPs. The created PVCL-Au-MnO(2) NGs were well characterized and systematically examined in their cytotoxicity, cellular uptake, intracellular oxygen and ·OH production, and cell cycle arrest in vitro, evaluated to disclose their RT sensitization effects of cancer cells and a tumor model, and assessed to validate their dual-mode CT/MR imaging potential, pharmacokinetics, biodistribution, and biosafety in vivo. Results: The formed PVCL-Au-MnO(2) NGs with a size of 121.5 nm and good stability can efficiently generate reactive oxygen species through a Fenton-like reaction to result in cell cycle distribution toward highly radiosensitive G2/M phase prior to X-ray irradiation, sensitize the RT of cancer cells under X-ray through the loaded Au NPs to induce the significant DNA damage, and further prevent DNA-repairing process after RT through the continuous production of O(2) catalyzed by MnO(2) in the hybrid NGs to relieve the tumor hypoxia. Likewise, the in vivo tumor RT can also be guided through dual mode CT/MR imaging due to the Au NPs and Mn(II) transformed from MnO(2) NPs. Conclusion: Our study suggests an intelligent PVCL-based theranostic NG platform that can achieve “full-process” sensitized tumor RT under the guidance of dual-mode CT/MR imaging.
format Online
Article
Text
id pubmed-9065179
institution National Center for Biotechnology Information
language English
publishDate 2022
publisher Ivyspring International Publisher
record_format MEDLINE/PubMed
spelling pubmed-90651792022-05-10 Intelligent design of polymer nanogels for full-process sensitized radiotherapy and dual-mode computed tomography/magnetic resonance imaging of tumors Zhang, Changchang Tu, Wenzhi Chen, Xuming Xu, Bing Li, Xin Hu, Chaolei Shen, Mingwu Song, Shaoli Jiang, Chunjuan Yao, Shengyu Pich, Andrij Liu, Yong Shi, Xiangyang Theranostics Research Paper Rationale: Development of intelligent radiosensitization nanoplatforms for imaging-guided tumor radiotherapy (RT) remains challenging. We report here the construction of an intelligent nanoplatform based on poly(N-vinylcaprolactam) (PVCL) nanogels (NGs) co-loaded with gold (Au) and manganese dioxide (MnO(2)) nanoparticles (NPs) for dual-mode computed tomography (CT)/magnetic resonance (MR) imaging-guided “full-process” sensitized RT of tumors. Methods: PVCL NGs were synthesized via precipitation polymerization and in situ loaded with Au and MnO(2) NPs. The created PVCL-Au-MnO(2) NGs were well characterized and systematically examined in their cytotoxicity, cellular uptake, intracellular oxygen and ·OH production, and cell cycle arrest in vitro, evaluated to disclose their RT sensitization effects of cancer cells and a tumor model, and assessed to validate their dual-mode CT/MR imaging potential, pharmacokinetics, biodistribution, and biosafety in vivo. Results: The formed PVCL-Au-MnO(2) NGs with a size of 121.5 nm and good stability can efficiently generate reactive oxygen species through a Fenton-like reaction to result in cell cycle distribution toward highly radiosensitive G2/M phase prior to X-ray irradiation, sensitize the RT of cancer cells under X-ray through the loaded Au NPs to induce the significant DNA damage, and further prevent DNA-repairing process after RT through the continuous production of O(2) catalyzed by MnO(2) in the hybrid NGs to relieve the tumor hypoxia. Likewise, the in vivo tumor RT can also be guided through dual mode CT/MR imaging due to the Au NPs and Mn(II) transformed from MnO(2) NPs. Conclusion: Our study suggests an intelligent PVCL-based theranostic NG platform that can achieve “full-process” sensitized tumor RT under the guidance of dual-mode CT/MR imaging. Ivyspring International Publisher 2022-04-18 /pmc/articles/PMC9065179/ /pubmed/35547775 http://dx.doi.org/10.7150/thno.70346 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
Zhang, Changchang
Tu, Wenzhi
Chen, Xuming
Xu, Bing
Li, Xin
Hu, Chaolei
Shen, Mingwu
Song, Shaoli
Jiang, Chunjuan
Yao, Shengyu
Pich, Andrij
Liu, Yong
Shi, Xiangyang
Intelligent design of polymer nanogels for full-process sensitized radiotherapy and dual-mode computed tomography/magnetic resonance imaging of tumors
title Intelligent design of polymer nanogels for full-process sensitized radiotherapy and dual-mode computed tomography/magnetic resonance imaging of tumors
title_full Intelligent design of polymer nanogels for full-process sensitized radiotherapy and dual-mode computed tomography/magnetic resonance imaging of tumors
title_fullStr Intelligent design of polymer nanogels for full-process sensitized radiotherapy and dual-mode computed tomography/magnetic resonance imaging of tumors
title_full_unstemmed Intelligent design of polymer nanogels for full-process sensitized radiotherapy and dual-mode computed tomography/magnetic resonance imaging of tumors
title_short Intelligent design of polymer nanogels for full-process sensitized radiotherapy and dual-mode computed tomography/magnetic resonance imaging of tumors
title_sort intelligent design of polymer nanogels for full-process sensitized radiotherapy and dual-mode computed tomography/magnetic resonance imaging of tumors
topic Research Paper
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9065179/
https://www.ncbi.nlm.nih.gov/pubmed/35547775
http://dx.doi.org/10.7150/thno.70346
work_keys_str_mv AT zhangchangchang intelligentdesignofpolymernanogelsforfullprocesssensitizedradiotherapyanddualmodecomputedtomographymagneticresonanceimagingoftumors
AT tuwenzhi intelligentdesignofpolymernanogelsforfullprocesssensitizedradiotherapyanddualmodecomputedtomographymagneticresonanceimagingoftumors
AT chenxuming intelligentdesignofpolymernanogelsforfullprocesssensitizedradiotherapyanddualmodecomputedtomographymagneticresonanceimagingoftumors
AT xubing intelligentdesignofpolymernanogelsforfullprocesssensitizedradiotherapyanddualmodecomputedtomographymagneticresonanceimagingoftumors
AT lixin intelligentdesignofpolymernanogelsforfullprocesssensitizedradiotherapyanddualmodecomputedtomographymagneticresonanceimagingoftumors
AT huchaolei intelligentdesignofpolymernanogelsforfullprocesssensitizedradiotherapyanddualmodecomputedtomographymagneticresonanceimagingoftumors
AT shenmingwu intelligentdesignofpolymernanogelsforfullprocesssensitizedradiotherapyanddualmodecomputedtomographymagneticresonanceimagingoftumors
AT songshaoli intelligentdesignofpolymernanogelsforfullprocesssensitizedradiotherapyanddualmodecomputedtomographymagneticresonanceimagingoftumors
AT jiangchunjuan intelligentdesignofpolymernanogelsforfullprocesssensitizedradiotherapyanddualmodecomputedtomographymagneticresonanceimagingoftumors
AT yaoshengyu intelligentdesignofpolymernanogelsforfullprocesssensitizedradiotherapyanddualmodecomputedtomographymagneticresonanceimagingoftumors
AT pichandrij intelligentdesignofpolymernanogelsforfullprocesssensitizedradiotherapyanddualmodecomputedtomographymagneticresonanceimagingoftumors
AT liuyong intelligentdesignofpolymernanogelsforfullprocesssensitizedradiotherapyanddualmodecomputedtomographymagneticresonanceimagingoftumors
AT shixiangyang intelligentdesignofpolymernanogelsforfullprocesssensitizedradiotherapyanddualmodecomputedtomographymagneticresonanceimagingoftumors