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Nanoparticle-mediated convection-enhanced delivery of a DNA intercalator to gliomas circumvents temozolomide resistance

In patients with glioblastoma, resistance to the chemotherapeutic temozolomide (TMZ) limits any survival benefits conferred by the drug. Here we show that the convection-enhanced delivery of nanoparticles containing disulfide bonds (which are cleaved in the reductive environment of the tumour) and e...

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Autores principales: Wang, Yongheng, Jiang, Yuhang, Wei, Dengshuai, Singh, Priya, Yu, Yingjie, Lee, Teresa, Zhang, Lingpu, Mandl, Hanna K., Piotrowski-Daspit, Alexandra S., Chen, Xinyuan, Li, Fan, Li, Xing, Cheng, Yiyu, Josowitz, Alexander, Yang, Fan, Zhao, Yao, Wang, Fuyi, Zhao, Zhenwen, Huttner, Anita, Bindra, Ranjit S., Xiao, Haihua, Saltzman, W. Mark
Formato: Online Artículo Texto
Lenguaje:English
Publicado: 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8497438/
https://www.ncbi.nlm.nih.gov/pubmed/34045730
http://dx.doi.org/10.1038/s41551-021-00728-7
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author Wang, Yongheng
Jiang, Yuhang
Wei, Dengshuai
Singh, Priya
Yu, Yingjie
Lee, Teresa
Zhang, Lingpu
Mandl, Hanna K.
Piotrowski-Daspit, Alexandra S.
Chen, Xinyuan
Li, Fan
Li, Xing
Cheng, Yiyu
Josowitz, Alexander
Yang, Fan
Zhao, Yao
Wang, Fuyi
Zhao, Zhenwen
Huttner, Anita
Bindra, Ranjit S.
Xiao, Haihua
Saltzman, W. Mark
author_facet Wang, Yongheng
Jiang, Yuhang
Wei, Dengshuai
Singh, Priya
Yu, Yingjie
Lee, Teresa
Zhang, Lingpu
Mandl, Hanna K.
Piotrowski-Daspit, Alexandra S.
Chen, Xinyuan
Li, Fan
Li, Xing
Cheng, Yiyu
Josowitz, Alexander
Yang, Fan
Zhao, Yao
Wang, Fuyi
Zhao, Zhenwen
Huttner, Anita
Bindra, Ranjit S.
Xiao, Haihua
Saltzman, W. Mark
author_sort Wang, Yongheng
collection PubMed
description In patients with glioblastoma, resistance to the chemotherapeutic temozolomide (TMZ) limits any survival benefits conferred by the drug. Here we show that the convection-enhanced delivery of nanoparticles containing disulfide bonds (which are cleaved in the reductive environment of the tumour) and encapsulating an oxaliplatin prodrug and a cationic DNA intercalator inhibit the growth of TMZ-resistant cells from patient-derived xenografts, and hinder the progression of TMZ-resistant human glioblastoma tumours in mice without causing any detectable toxicity. Genome-wide RNA profiling and metabolomic analyses of a glioma cell line treated with the cationic intercalator or with TMZ showed substantial differences in the signalling and metabolic pathways altered by each drug. Our findings suggest that the combination of anticancer drugs with distinct mechanisms of action with selective drug release and convection-enhanced delivery may represent a translational strategy for the treatment of TMZ-resistant gliomas.
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spelling pubmed-84974382021-11-27 Nanoparticle-mediated convection-enhanced delivery of a DNA intercalator to gliomas circumvents temozolomide resistance Wang, Yongheng Jiang, Yuhang Wei, Dengshuai Singh, Priya Yu, Yingjie Lee, Teresa Zhang, Lingpu Mandl, Hanna K. Piotrowski-Daspit, Alexandra S. Chen, Xinyuan Li, Fan Li, Xing Cheng, Yiyu Josowitz, Alexander Yang, Fan Zhao, Yao Wang, Fuyi Zhao, Zhenwen Huttner, Anita Bindra, Ranjit S. Xiao, Haihua Saltzman, W. Mark Nat Biomed Eng Article In patients with glioblastoma, resistance to the chemotherapeutic temozolomide (TMZ) limits any survival benefits conferred by the drug. Here we show that the convection-enhanced delivery of nanoparticles containing disulfide bonds (which are cleaved in the reductive environment of the tumour) and encapsulating an oxaliplatin prodrug and a cationic DNA intercalator inhibit the growth of TMZ-resistant cells from patient-derived xenografts, and hinder the progression of TMZ-resistant human glioblastoma tumours in mice without causing any detectable toxicity. Genome-wide RNA profiling and metabolomic analyses of a glioma cell line treated with the cationic intercalator or with TMZ showed substantial differences in the signalling and metabolic pathways altered by each drug. Our findings suggest that the combination of anticancer drugs with distinct mechanisms of action with selective drug release and convection-enhanced delivery may represent a translational strategy for the treatment of TMZ-resistant gliomas. 2021-05-27 2021-09 /pmc/articles/PMC8497438/ /pubmed/34045730 http://dx.doi.org/10.1038/s41551-021-00728-7 Text en http://www.nature.com/authors/editorial_policies/license.html#termsUsers may view, print, copy, and download text and data-mine the content in such documents, for the purposes of academic research, subject always to the full Conditions of use: http://www.nature.com/authors/editorial_policies/license.html#terms
spellingShingle Article
Wang, Yongheng
Jiang, Yuhang
Wei, Dengshuai
Singh, Priya
Yu, Yingjie
Lee, Teresa
Zhang, Lingpu
Mandl, Hanna K.
Piotrowski-Daspit, Alexandra S.
Chen, Xinyuan
Li, Fan
Li, Xing
Cheng, Yiyu
Josowitz, Alexander
Yang, Fan
Zhao, Yao
Wang, Fuyi
Zhao, Zhenwen
Huttner, Anita
Bindra, Ranjit S.
Xiao, Haihua
Saltzman, W. Mark
Nanoparticle-mediated convection-enhanced delivery of a DNA intercalator to gliomas circumvents temozolomide resistance
title Nanoparticle-mediated convection-enhanced delivery of a DNA intercalator to gliomas circumvents temozolomide resistance
title_full Nanoparticle-mediated convection-enhanced delivery of a DNA intercalator to gliomas circumvents temozolomide resistance
title_fullStr Nanoparticle-mediated convection-enhanced delivery of a DNA intercalator to gliomas circumvents temozolomide resistance
title_full_unstemmed Nanoparticle-mediated convection-enhanced delivery of a DNA intercalator to gliomas circumvents temozolomide resistance
title_short Nanoparticle-mediated convection-enhanced delivery of a DNA intercalator to gliomas circumvents temozolomide resistance
title_sort nanoparticle-mediated convection-enhanced delivery of a dna intercalator to gliomas circumvents temozolomide resistance
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8497438/
https://www.ncbi.nlm.nih.gov/pubmed/34045730
http://dx.doi.org/10.1038/s41551-021-00728-7
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