Dynamic micelles with detachable PEGylation at tumoral extracellular pH for enhanced chemotherapy
Although surface PEGylation of nanomedicines can decrease serum protein adsorption in vivo, it also blocks uptake by tumor cells. This dilemma could be overcome by employing detachably PEGylated strategy at tumoral extracellular microenvironment to achieve improved cellular uptake while prolonged ci...
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doaj-2ae362150e5f483087f05c9a3190d07f2020-12-17T04:47:37ZengElsevierAsian Journal of Pharmaceutical Sciences1818-08762020-11-01156728738Dynamic micelles with detachable PEGylation at tumoral extracellular pH for enhanced chemotherapyGuoqing Yan0Panpan Zhang1Jun Wang2Xin Wang3Rupei Tang4Engineering Research Center for Biomedical Materials, School of Life Science, Anhui University, Hefei 230601, ChinaEngineering Research Center for Biomedical Materials, School of Life Science, Anhui University, Hefei 230601, ChinaEngineering Research Center for Biomedical Materials, School of Life Science, Anhui University, Hefei 230601, ChinaEngineering Research Center for Biomedical Materials, School of Life Science, Anhui University, Hefei 230601, ChinaCorresponding author. Engineering Research Center for Biomedical Materials, School of Life Science, Anhui University, 111 Jiulong Road, Hefei 230601, China. Tel.: +86 551 63861493.; Engineering Research Center for Biomedical Materials, School of Life Science, Anhui University, Hefei 230601, ChinaAlthough surface PEGylation of nanomedicines can decrease serum protein adsorption in vivo, it also blocks uptake by tumor cells. This dilemma could be overcome by employing detachably PEGylated strategy at tumoral extracellular microenvironment to achieve improved cellular uptake while prolonged circulation times. Herein, the amphiphilic graft copolymers with pH-sensitive ortho ester-linked mPEG in side chains and polyurethanes in backbone, can self-assemble into the free and doxorubicin (DOX)-loaded micelles. The pH-sensitive micelles could undergo several characteristics as follows: (i) PEGylated shells for stability in sodium dodecyl sulfonate (SDS) solution; (ii) DePEGylation via degradation of ortho ester linkages at tumoral extracellular pH (6.5) for gradually dynamic size changes and effective release of DOX; and (iii) enhanced cellular uptake and cytotoxicity via positive DOX. Moreover, the dynamic micelles with detachable PEGylation could quickly penetrate the centers of SH-SY5Y multicellular spheroids (MCs) and strongly inhibit tumor growth in vitro and in vivo, and might be considered as promising and effective drug carriers in tumor therapy.http://www.sciencedirect.com/science/article/pii/S1818087619309535MicellesOrtho esterPEGylationSize transitionAntitumor |
collection |
DOAJ |
language |
English |
format |
Article |
sources |
DOAJ |
author |
Guoqing Yan Panpan Zhang Jun Wang Xin Wang Rupei Tang |
spellingShingle |
Guoqing Yan Panpan Zhang Jun Wang Xin Wang Rupei Tang Dynamic micelles with detachable PEGylation at tumoral extracellular pH for enhanced chemotherapy Asian Journal of Pharmaceutical Sciences Micelles Ortho ester PEGylation Size transition Antitumor |
author_facet |
Guoqing Yan Panpan Zhang Jun Wang Xin Wang Rupei Tang |
author_sort |
Guoqing Yan |
title |
Dynamic micelles with detachable PEGylation at tumoral extracellular pH for enhanced chemotherapy |
title_short |
Dynamic micelles with detachable PEGylation at tumoral extracellular pH for enhanced chemotherapy |
title_full |
Dynamic micelles with detachable PEGylation at tumoral extracellular pH for enhanced chemotherapy |
title_fullStr |
Dynamic micelles with detachable PEGylation at tumoral extracellular pH for enhanced chemotherapy |
title_full_unstemmed |
Dynamic micelles with detachable PEGylation at tumoral extracellular pH for enhanced chemotherapy |
title_sort |
dynamic micelles with detachable pegylation at tumoral extracellular ph for enhanced chemotherapy |
publisher |
Elsevier |
series |
Asian Journal of Pharmaceutical Sciences |
issn |
1818-0876 |
publishDate |
2020-11-01 |
description |
Although surface PEGylation of nanomedicines can decrease serum protein adsorption in vivo, it also blocks uptake by tumor cells. This dilemma could be overcome by employing detachably PEGylated strategy at tumoral extracellular microenvironment to achieve improved cellular uptake while prolonged circulation times. Herein, the amphiphilic graft copolymers with pH-sensitive ortho ester-linked mPEG in side chains and polyurethanes in backbone, can self-assemble into the free and doxorubicin (DOX)-loaded micelles. The pH-sensitive micelles could undergo several characteristics as follows: (i) PEGylated shells for stability in sodium dodecyl sulfonate (SDS) solution; (ii) DePEGylation via degradation of ortho ester linkages at tumoral extracellular pH (6.5) for gradually dynamic size changes and effective release of DOX; and (iii) enhanced cellular uptake and cytotoxicity via positive DOX. Moreover, the dynamic micelles with detachable PEGylation could quickly penetrate the centers of SH-SY5Y multicellular spheroids (MCs) and strongly inhibit tumor growth in vitro and in vivo, and might be considered as promising and effective drug carriers in tumor therapy. |
topic |
Micelles Ortho ester PEGylation Size transition Antitumor |
url |
http://www.sciencedirect.com/science/article/pii/S1818087619309535 |
work_keys_str_mv |
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