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Boosting cisplatin chemotherapy by nanomotor-enhanced tumor penetration and DNA adducts formation
by
Zhang, Kaixiang
, Li, Wentao
, Shi, Jinjin
, Li, Yingying
, Ma, Xing
, Wang, Yong
, Zhang, Zhenzhong
, Zhang, Hongling
, Wang, Yunlong
, Jin, Yajie
, Duan, Wendi
, Xu, Lihua
, Liang, Chenglin
, Liu, Junjie
in
Adducts
/ Biotechnology
/ Cancer
/ Cascade chemical reactions
/ Chelation
/ Chemistry
/ Chemistry and Materials Science
/ Chemotherapy
/ Cisplatin
/ Cisplatin chemotherapy
/ Dechlorination
/ DNA adduct
/ DNA adducts
/ DNA damage
/ DNA repair
/ Dosage and administration
/ Drugs
/ Efficiency
/ Enzymes
/ Genomes
/ Growth inhibition
/ Hydrogen peroxide
/ Innovations
/ Intracellular
/ Ion regulation
/ Iron
/ Molecular Medicine
/ Nanomedicine
/ Nanomotor
/ Nanoparticles
/ Nanotechnology
/ Nanotechnology devices
/ Penetration
/ Platinum
/ Polymers
/ Silver
/ Silver chloride
/ Tissues
/ Toxicity
/ Tumor penetration
/ Tumors
2022
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Boosting cisplatin chemotherapy by nanomotor-enhanced tumor penetration and DNA adducts formation
by
Zhang, Kaixiang
, Li, Wentao
, Shi, Jinjin
, Li, Yingying
, Ma, Xing
, Wang, Yong
, Zhang, Zhenzhong
, Zhang, Hongling
, Wang, Yunlong
, Jin, Yajie
, Duan, Wendi
, Xu, Lihua
, Liang, Chenglin
, Liu, Junjie
in
Adducts
/ Biotechnology
/ Cancer
/ Cascade chemical reactions
/ Chelation
/ Chemistry
/ Chemistry and Materials Science
/ Chemotherapy
/ Cisplatin
/ Cisplatin chemotherapy
/ Dechlorination
/ DNA adduct
/ DNA adducts
/ DNA damage
/ DNA repair
/ Dosage and administration
/ Drugs
/ Efficiency
/ Enzymes
/ Genomes
/ Growth inhibition
/ Hydrogen peroxide
/ Innovations
/ Intracellular
/ Ion regulation
/ Iron
/ Molecular Medicine
/ Nanomedicine
/ Nanomotor
/ Nanoparticles
/ Nanotechnology
/ Nanotechnology devices
/ Penetration
/ Platinum
/ Polymers
/ Silver
/ Silver chloride
/ Tissues
/ Toxicity
/ Tumor penetration
/ Tumors
2022
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Boosting cisplatin chemotherapy by nanomotor-enhanced tumor penetration and DNA adducts formation
by
Zhang, Kaixiang
, Li, Wentao
, Shi, Jinjin
, Li, Yingying
, Ma, Xing
, Wang, Yong
, Zhang, Zhenzhong
, Zhang, Hongling
, Wang, Yunlong
, Jin, Yajie
, Duan, Wendi
, Xu, Lihua
, Liang, Chenglin
, Liu, Junjie
in
Adducts
/ Biotechnology
/ Cancer
/ Cascade chemical reactions
/ Chelation
/ Chemistry
/ Chemistry and Materials Science
/ Chemotherapy
/ Cisplatin
/ Cisplatin chemotherapy
/ Dechlorination
/ DNA adduct
/ DNA adducts
/ DNA damage
/ DNA repair
/ Dosage and administration
/ Drugs
/ Efficiency
/ Enzymes
/ Genomes
/ Growth inhibition
/ Hydrogen peroxide
/ Innovations
/ Intracellular
/ Ion regulation
/ Iron
/ Molecular Medicine
/ Nanomedicine
/ Nanomotor
/ Nanoparticles
/ Nanotechnology
/ Nanotechnology devices
/ Penetration
/ Platinum
/ Polymers
/ Silver
/ Silver chloride
/ Tissues
/ Toxicity
/ Tumor penetration
/ Tumors
2022
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Boosting cisplatin chemotherapy by nanomotor-enhanced tumor penetration and DNA adducts formation
Journal Article
Boosting cisplatin chemotherapy by nanomotor-enhanced tumor penetration and DNA adducts formation
2022
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Overview
Despite many nano-based strategies devoted to delivering cisplatin for tumor therapy, its clinical benefits are compromised by poor tissue penetration and limited DNA adducts formation of the drug. Herein, a cisplatin loading nanomotor based janus structured Ag-polymer is developed for cisplatin delivery of deeper tissue and increased DNA adducts formation. The nanomotor displayed a self‐propelled tumor penetration fueled by hydrogen peroxide (H
2
O
2
) in tumor tissues, which is catalytically decomposed into a large amount of oxygen bubbles by Ag nanoparticles (NPs). Notably, cisplatin could elevate the intracellular H
2
O
2
level through cascade reactions, further promote the degradation of Ag NPs accompanied with the Ag
+
release, which could downregulate intracellular Cl
−
through the formation of AgCl precipitate, thereby enhancing cisplatin dechlorination and Pt–DNA formation. Moreover, polymer can also inhibit the activity of ALKBH2 (a Fe
2+
-dependent DNA repair enzyme) by chelating intracellular Fe
2+
to increase the proportion of irreparable Pt–DNA cross-links. It is found that deep tissue penetration, as well as the increased formation and maintenance of Pt–DNA adducts induced by the nanomotor afford 80% of tumor growth inhibition with negligible toxicity. This work provides an important perspective of resolving chemotherapeutic barriers for boosting cisplatin therapy.
Graphical Abstract
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