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A Co-delivery System Based on a Dimeric Prodrug and Star-Shaped Polymeric Prodrug Micelles for Drug Delivery

Chemotherapy is one of the commonly used therapies for the treatment of malignant tumors. Insufficient drug-loading capacity is the major challenge for polymeric micelle–based drug delivery systems of chemotherapy. Here, the redox-responsive star-shaped polymeric prodrug (PSSP) and the dimeric prodr...

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Autores principales: Zhou, Man, Luo, Yan, Zeng, Weijia, Yang, Xiaoqing, Chen, Tingting, Zhang, Lulu, He, Xiaoyan, Yi, Xiuguang, Li, Yongxiu, Yi, Xiaoqing
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Frontiers Media S.A. 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8569866/
https://www.ncbi.nlm.nih.gov/pubmed/34746097
http://dx.doi.org/10.3389/fchem.2021.765021
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author Zhou, Man
Luo, Yan
Zeng, Weijia
Yang, Xiaoqing
Chen, Tingting
Zhang, Lulu
He, Xiaoyan
Yi, Xiuguang
Li, Yongxiu
Yi, Xiaoqing
author_facet Zhou, Man
Luo, Yan
Zeng, Weijia
Yang, Xiaoqing
Chen, Tingting
Zhang, Lulu
He, Xiaoyan
Yi, Xiuguang
Li, Yongxiu
Yi, Xiaoqing
author_sort Zhou, Man
collection PubMed
description Chemotherapy is one of the commonly used therapies for the treatment of malignant tumors. Insufficient drug-loading capacity is the major challenge for polymeric micelle–based drug delivery systems of chemotherapy. Here, the redox-responsive star-shaped polymeric prodrug (PSSP) and the dimeric prodrug of paclitaxel (PTX) were prepared. Then the dimeric prodrug of PTX (diPTX, diP) was loaded into the core of the star-shaped polymeric prodrug micelles of PSSP by hydrophobic interaction forming the redox-responsive prodrug micelles of diPTX@PSSP for intracellular drug release in tumor cells. The hydrodynamic diameter of diPTX@PSSP nanoparticles was 114.3 nm ± 2.1 (PDI = 0.219 ± 0.016), and the micelles had long-term colloidal stability and the drug-loading content (DLC) of diPTX and PTX is 16.7 and 46.9%, respectively. The prepared micelles could broke under the reductive microenvironment within tumor cells, as a result, the dimeric prodrug of diP and polymeric prodrug micelles of PSSP were rapidly disassembled, leading to the rapid release of intracellular drugs. In vitro release studies showed that under the condition of reduced glutathione (GSH) (10 mM), the release of PTX was significantly accelerated with approximately 86.6% released within 21 h, and the released PTX in cytoplasm could promote the disintegration of microtubules and induce cell apoptosis. These results indicated that the new type of this reduction-sensitive nanodrug delivery system based on dimeric prodrug@polymeric prodrug micelles would be a promising technology in chemotherapy.
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spelling pubmed-85698662021-11-06 A Co-delivery System Based on a Dimeric Prodrug and Star-Shaped Polymeric Prodrug Micelles for Drug Delivery Zhou, Man Luo, Yan Zeng, Weijia Yang, Xiaoqing Chen, Tingting Zhang, Lulu He, Xiaoyan Yi, Xiuguang Li, Yongxiu Yi, Xiaoqing Front Chem Chemistry Chemotherapy is one of the commonly used therapies for the treatment of malignant tumors. Insufficient drug-loading capacity is the major challenge for polymeric micelle–based drug delivery systems of chemotherapy. Here, the redox-responsive star-shaped polymeric prodrug (PSSP) and the dimeric prodrug of paclitaxel (PTX) were prepared. Then the dimeric prodrug of PTX (diPTX, diP) was loaded into the core of the star-shaped polymeric prodrug micelles of PSSP by hydrophobic interaction forming the redox-responsive prodrug micelles of diPTX@PSSP for intracellular drug release in tumor cells. The hydrodynamic diameter of diPTX@PSSP nanoparticles was 114.3 nm ± 2.1 (PDI = 0.219 ± 0.016), and the micelles had long-term colloidal stability and the drug-loading content (DLC) of diPTX and PTX is 16.7 and 46.9%, respectively. The prepared micelles could broke under the reductive microenvironment within tumor cells, as a result, the dimeric prodrug of diP and polymeric prodrug micelles of PSSP were rapidly disassembled, leading to the rapid release of intracellular drugs. In vitro release studies showed that under the condition of reduced glutathione (GSH) (10 mM), the release of PTX was significantly accelerated with approximately 86.6% released within 21 h, and the released PTX in cytoplasm could promote the disintegration of microtubules and induce cell apoptosis. These results indicated that the new type of this reduction-sensitive nanodrug delivery system based on dimeric prodrug@polymeric prodrug micelles would be a promising technology in chemotherapy. Frontiers Media S.A. 2021-10-22 /pmc/articles/PMC8569866/ /pubmed/34746097 http://dx.doi.org/10.3389/fchem.2021.765021 Text en Copyright © 2021 Zhou, Luo, Zeng, Yang, Chen, Zhang, He, Yi, Li and Yi. https://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 Chemistry
Zhou, Man
Luo, Yan
Zeng, Weijia
Yang, Xiaoqing
Chen, Tingting
Zhang, Lulu
He, Xiaoyan
Yi, Xiuguang
Li, Yongxiu
Yi, Xiaoqing
A Co-delivery System Based on a Dimeric Prodrug and Star-Shaped Polymeric Prodrug Micelles for Drug Delivery
title A Co-delivery System Based on a Dimeric Prodrug and Star-Shaped Polymeric Prodrug Micelles for Drug Delivery
title_full A Co-delivery System Based on a Dimeric Prodrug and Star-Shaped Polymeric Prodrug Micelles for Drug Delivery
title_fullStr A Co-delivery System Based on a Dimeric Prodrug and Star-Shaped Polymeric Prodrug Micelles for Drug Delivery
title_full_unstemmed A Co-delivery System Based on a Dimeric Prodrug and Star-Shaped Polymeric Prodrug Micelles for Drug Delivery
title_short A Co-delivery System Based on a Dimeric Prodrug and Star-Shaped Polymeric Prodrug Micelles for Drug Delivery
title_sort co-delivery system based on a dimeric prodrug and star-shaped polymeric prodrug micelles for drug delivery
topic Chemistry
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8569866/
https://www.ncbi.nlm.nih.gov/pubmed/34746097
http://dx.doi.org/10.3389/fchem.2021.765021
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