Cargando…

Fabrication of pH/Reduction Sensitive Polyethylene Glycol-Based Micelles for Enhanced Intracellular Drug Release

At present, the drug is still difficult to release completely and quickly only with single stimulation. In order to promote the rapid release of polymeric micelles at tumor site, pH/reduction sensitive polymers (PCT) containing disulfide bonds and orthoester groups were synthesized. The PCT polymers...

Descripción completa

Detalles Bibliográficos
Autores principales: Yang, Yang, Yang, Fuwei, Shan, Xiaotian, Xu, Jiamin, Fang, Wenjie, Zhou, Juan, Qiu, Lipeng, Chen, Jinghua
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8470983/
https://www.ncbi.nlm.nih.gov/pubmed/34575539
http://dx.doi.org/10.3390/pharmaceutics13091464
_version_ 1784574340820369408
author Yang, Yang
Yang, Fuwei
Shan, Xiaotian
Xu, Jiamin
Fang, Wenjie
Zhou, Juan
Qiu, Lipeng
Chen, Jinghua
author_facet Yang, Yang
Yang, Fuwei
Shan, Xiaotian
Xu, Jiamin
Fang, Wenjie
Zhou, Juan
Qiu, Lipeng
Chen, Jinghua
author_sort Yang, Yang
collection PubMed
description At present, the drug is still difficult to release completely and quickly only with single stimulation. In order to promote the rapid release of polymeric micelles at tumor site, pH/reduction sensitive polymers (PCT) containing disulfide bonds and orthoester groups were synthesized. The PCT polymers can self-assemble in water and entrap doxorubicin to form drug-loaded micelles (DOX/PCT). In an in vitro drug release experiment, the cumulative release of DOX/PCT micelles in the simulated tumor microenvironment (pH 5.0 with GSH) reached (89.7 ± 11.7)% at 72 h, while it was only (16.7 ± 6.1)% in the normal physiological environment (pH 7.4 without GSH). In addition, pH sensitive DOX loaded micellar system (DOX/PAT) was prepared as a control. Furthermore, compared with DOX/PAT micelles, DOX/PCT micelles showed the stronger cytotoxicity against tumor cells to achieve an effective antitumor effect. After being internalized by clathrin/caveolin-mediated endocytosis and macropinocytosis, DOX/PCT micelles were depolymerized in intercellular acidic and a reductive environment to release DOX rapidly to kill tumor cells. Additionally, DOX/PCT micelles had a better inhibitory effect on tumor growth than DOX/PAT micelles in in vivo antitumor activity studies. Therefore, pH/reduction dual sensitive PCT polymers have great potential to be used as repaid release nanocarriers for intercellular delivery of antitumor drugs.
format Online
Article
Text
id pubmed-8470983
institution National Center for Biotechnology Information
language English
publishDate 2021
publisher MDPI
record_format MEDLINE/PubMed
spelling pubmed-84709832021-09-27 Fabrication of pH/Reduction Sensitive Polyethylene Glycol-Based Micelles for Enhanced Intracellular Drug Release Yang, Yang Yang, Fuwei Shan, Xiaotian Xu, Jiamin Fang, Wenjie Zhou, Juan Qiu, Lipeng Chen, Jinghua Pharmaceutics Article At present, the drug is still difficult to release completely and quickly only with single stimulation. In order to promote the rapid release of polymeric micelles at tumor site, pH/reduction sensitive polymers (PCT) containing disulfide bonds and orthoester groups were synthesized. The PCT polymers can self-assemble in water and entrap doxorubicin to form drug-loaded micelles (DOX/PCT). In an in vitro drug release experiment, the cumulative release of DOX/PCT micelles in the simulated tumor microenvironment (pH 5.0 with GSH) reached (89.7 ± 11.7)% at 72 h, while it was only (16.7 ± 6.1)% in the normal physiological environment (pH 7.4 without GSH). In addition, pH sensitive DOX loaded micellar system (DOX/PAT) was prepared as a control. Furthermore, compared with DOX/PAT micelles, DOX/PCT micelles showed the stronger cytotoxicity against tumor cells to achieve an effective antitumor effect. After being internalized by clathrin/caveolin-mediated endocytosis and macropinocytosis, DOX/PCT micelles were depolymerized in intercellular acidic and a reductive environment to release DOX rapidly to kill tumor cells. Additionally, DOX/PCT micelles had a better inhibitory effect on tumor growth than DOX/PAT micelles in in vivo antitumor activity studies. Therefore, pH/reduction dual sensitive PCT polymers have great potential to be used as repaid release nanocarriers for intercellular delivery of antitumor drugs. MDPI 2021-09-14 /pmc/articles/PMC8470983/ /pubmed/34575539 http://dx.doi.org/10.3390/pharmaceutics13091464 Text en © 2021 by the authors. https://creativecommons.org/licenses/by/4.0/Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (https://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Yang, Yang
Yang, Fuwei
Shan, Xiaotian
Xu, Jiamin
Fang, Wenjie
Zhou, Juan
Qiu, Lipeng
Chen, Jinghua
Fabrication of pH/Reduction Sensitive Polyethylene Glycol-Based Micelles for Enhanced Intracellular Drug Release
title Fabrication of pH/Reduction Sensitive Polyethylene Glycol-Based Micelles for Enhanced Intracellular Drug Release
title_full Fabrication of pH/Reduction Sensitive Polyethylene Glycol-Based Micelles for Enhanced Intracellular Drug Release
title_fullStr Fabrication of pH/Reduction Sensitive Polyethylene Glycol-Based Micelles for Enhanced Intracellular Drug Release
title_full_unstemmed Fabrication of pH/Reduction Sensitive Polyethylene Glycol-Based Micelles for Enhanced Intracellular Drug Release
title_short Fabrication of pH/Reduction Sensitive Polyethylene Glycol-Based Micelles for Enhanced Intracellular Drug Release
title_sort fabrication of ph/reduction sensitive polyethylene glycol-based micelles for enhanced intracellular drug release
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8470983/
https://www.ncbi.nlm.nih.gov/pubmed/34575539
http://dx.doi.org/10.3390/pharmaceutics13091464
work_keys_str_mv AT yangyang fabricationofphreductionsensitivepolyethyleneglycolbasedmicellesforenhancedintracellulardrugrelease
AT yangfuwei fabricationofphreductionsensitivepolyethyleneglycolbasedmicellesforenhancedintracellulardrugrelease
AT shanxiaotian fabricationofphreductionsensitivepolyethyleneglycolbasedmicellesforenhancedintracellulardrugrelease
AT xujiamin fabricationofphreductionsensitivepolyethyleneglycolbasedmicellesforenhancedintracellulardrugrelease
AT fangwenjie fabricationofphreductionsensitivepolyethyleneglycolbasedmicellesforenhancedintracellulardrugrelease
AT zhoujuan fabricationofphreductionsensitivepolyethyleneglycolbasedmicellesforenhancedintracellulardrugrelease
AT qiulipeng fabricationofphreductionsensitivepolyethyleneglycolbasedmicellesforenhancedintracellulardrugrelease
AT chenjinghua fabricationofphreductionsensitivepolyethyleneglycolbasedmicellesforenhancedintracellulardrugrelease