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Tumor-Microenvironment- Responsive Size-Shrinkable Drug-Delivery Nanosystems for Deepened Penetration Into Tumors

Over the years, the manipulation and clinical application of drug-delivery nanosystems for cancer diseases have attracted a rapid growth of academic research interests, and some nanodrugs have been approved for clinic application. Although encouraging achievements have been made, the potency of nano...

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Autores principales: Cheng, Xiaoliang, Li, Houli, Ge, Xuemei, Chen, Lijuan, Liu, Yao, Mao, Wenwei, Zhao, Bo, Yuan, Wei-En
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Frontiers Media S.A. 2020
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7729065/
https://www.ncbi.nlm.nih.gov/pubmed/33330618
http://dx.doi.org/10.3389/fmolb.2020.576420
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author Cheng, Xiaoliang
Li, Houli
Ge, Xuemei
Chen, Lijuan
Liu, Yao
Mao, Wenwei
Zhao, Bo
Yuan, Wei-En
author_facet Cheng, Xiaoliang
Li, Houli
Ge, Xuemei
Chen, Lijuan
Liu, Yao
Mao, Wenwei
Zhao, Bo
Yuan, Wei-En
author_sort Cheng, Xiaoliang
collection PubMed
description Over the years, the manipulation and clinical application of drug-delivery nanosystems for cancer diseases have attracted a rapid growth of academic research interests, and some nanodrugs have been approved for clinic application. Although encouraging achievements have been made, the potency of nanomedicines in cancer treatment is far from satisfaction, and one significant reason is the inefficient penetration of nanoparticles into solid tumors. Particle size is one of the most significant features that influence diffusion ability of the drug-delivery system in tumors. Size-shrinkable drug-delivery nanosystems possess a size-switchable property that can achieve passive targeting via the enhanced permeability and retention (EPR) effect and transform into ultrasmall particles in tumors for deep penetration into tumors. The tumor microenvironment is characterized by acidic pH, hypoxia, upregulated levels of enzymes, and a redox environment. In this review, we summarize and analyze the current research progresses and challenges in tumor microenvironment responsive size-shrinkable drug-delivery nanosystems. We further expect to present some meaningful proposals and enlightenments on promoting deep penetration into tumors of nanoparticles.
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spelling pubmed-77290652020-12-15 Tumor-Microenvironment- Responsive Size-Shrinkable Drug-Delivery Nanosystems for Deepened Penetration Into Tumors Cheng, Xiaoliang Li, Houli Ge, Xuemei Chen, Lijuan Liu, Yao Mao, Wenwei Zhao, Bo Yuan, Wei-En Front Mol Biosci Molecular Biosciences Over the years, the manipulation and clinical application of drug-delivery nanosystems for cancer diseases have attracted a rapid growth of academic research interests, and some nanodrugs have been approved for clinic application. Although encouraging achievements have been made, the potency of nanomedicines in cancer treatment is far from satisfaction, and one significant reason is the inefficient penetration of nanoparticles into solid tumors. Particle size is one of the most significant features that influence diffusion ability of the drug-delivery system in tumors. Size-shrinkable drug-delivery nanosystems possess a size-switchable property that can achieve passive targeting via the enhanced permeability and retention (EPR) effect and transform into ultrasmall particles in tumors for deep penetration into tumors. The tumor microenvironment is characterized by acidic pH, hypoxia, upregulated levels of enzymes, and a redox environment. In this review, we summarize and analyze the current research progresses and challenges in tumor microenvironment responsive size-shrinkable drug-delivery nanosystems. We further expect to present some meaningful proposals and enlightenments on promoting deep penetration into tumors of nanoparticles. Frontiers Media S.A. 2020-11-27 /pmc/articles/PMC7729065/ /pubmed/33330618 http://dx.doi.org/10.3389/fmolb.2020.576420 Text en Copyright © 2020 Cheng, Li, Ge, Chen, Liu, Mao, Zhao and Yuan. http://creativecommons.org/licenses/by/4.0/ This is an open-access article distributed under the terms of the Creative Commons Attribution License (CC BY). The use, distribution or reproduction in other forums is permitted, provided the original author(s) and the copyright owner(s) are credited and that the original publication in this journal is cited, in accordance with accepted academic practice. No use, distribution or reproduction is permitted which does not comply with these terms.
spellingShingle Molecular Biosciences
Cheng, Xiaoliang
Li, Houli
Ge, Xuemei
Chen, Lijuan
Liu, Yao
Mao, Wenwei
Zhao, Bo
Yuan, Wei-En
Tumor-Microenvironment- Responsive Size-Shrinkable Drug-Delivery Nanosystems for Deepened Penetration Into Tumors
title Tumor-Microenvironment- Responsive Size-Shrinkable Drug-Delivery Nanosystems for Deepened Penetration Into Tumors
title_full Tumor-Microenvironment- Responsive Size-Shrinkable Drug-Delivery Nanosystems for Deepened Penetration Into Tumors
title_fullStr Tumor-Microenvironment- Responsive Size-Shrinkable Drug-Delivery Nanosystems for Deepened Penetration Into Tumors
title_full_unstemmed Tumor-Microenvironment- Responsive Size-Shrinkable Drug-Delivery Nanosystems for Deepened Penetration Into Tumors
title_short Tumor-Microenvironment- Responsive Size-Shrinkable Drug-Delivery Nanosystems for Deepened Penetration Into Tumors
title_sort tumor-microenvironment- responsive size-shrinkable drug-delivery nanosystems for deepened penetration into tumors
topic Molecular Biosciences
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7729065/
https://www.ncbi.nlm.nih.gov/pubmed/33330618
http://dx.doi.org/10.3389/fmolb.2020.576420
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