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Enzymatic synthesis of selenium-containing amphiphilic aliphatic polycarbonate as an oxidation-responsive drug delivery vehicle

Although functional aliphatic polycarbonates (APCs) have attracted prominent research interest as stimuli-responsive biomaterials, the majority of functional APCs are fabricated by detrimental organometallic catalysts or organo-catalysts. Herein, a facile synthetic strategy based on enzymatic polyme...

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Autores principales: Yang, Xian-Ling, Xing, Xiu, Li, Jun, Liu, Yan-Hong, Wang, Na, Yu, Xiao-Qi
Formato: Online Artículo Texto
Lenguaje:English
Publicado: The Royal Society of Chemistry 2019
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9060885/
https://www.ncbi.nlm.nih.gov/pubmed/35517302
http://dx.doi.org/10.1039/c8ra10282a
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author Yang, Xian-Ling
Xing, Xiu
Li, Jun
Liu, Yan-Hong
Wang, Na
Yu, Xiao-Qi
author_facet Yang, Xian-Ling
Xing, Xiu
Li, Jun
Liu, Yan-Hong
Wang, Na
Yu, Xiao-Qi
author_sort Yang, Xian-Ling
collection PubMed
description Although functional aliphatic polycarbonates (APCs) have attracted prominent research interest as stimuli-responsive biomaterials, the majority of functional APCs are fabricated by detrimental organometallic catalysts or organo-catalysts. Herein, a facile synthetic strategy based on enzymatic polymerization was developed to construct a selenium-containing amphiphilic aliphatic polycarbonate (mPEG-b-CMP(45)). Specifically, the selenium in its backbone framework underwent a hydrophobic–hydrophilic transition upon exposure to the abnormal ROS level of the tumor, thus providing a promising platform for ROS-triggered drug release. This amphiphilic mPEG-b-CMP(45) efficiently encapsulated doxorubicin (DOX) via self-assembly in aqueous solution and showed an excellent ability to regulate the release of DOX in response to H(2)O(2) at biologically relevant concentrations (100 μM). These DOX-loaded nanoparticles could easily be internalized into U87 cells and possess the inherent antitumor properties of DOX, while they exhibited much lower cytotoxicity in normal cells HL-7702. Moreover, in many cases, the introduction of selenium caused high cytotoxicity of the materials, but the cytotoxicity results in HL-7702 cells demonstrated the good biocompatibility of mPEG-b-CMP(45). These collective data suggested the potential use of mPEG-b-CMP(45) as a biocompatible and smart drug delivery vehicle.
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spelling pubmed-90608852022-05-04 Enzymatic synthesis of selenium-containing amphiphilic aliphatic polycarbonate as an oxidation-responsive drug delivery vehicle Yang, Xian-Ling Xing, Xiu Li, Jun Liu, Yan-Hong Wang, Na Yu, Xiao-Qi RSC Adv Chemistry Although functional aliphatic polycarbonates (APCs) have attracted prominent research interest as stimuli-responsive biomaterials, the majority of functional APCs are fabricated by detrimental organometallic catalysts or organo-catalysts. Herein, a facile synthetic strategy based on enzymatic polymerization was developed to construct a selenium-containing amphiphilic aliphatic polycarbonate (mPEG-b-CMP(45)). Specifically, the selenium in its backbone framework underwent a hydrophobic–hydrophilic transition upon exposure to the abnormal ROS level of the tumor, thus providing a promising platform for ROS-triggered drug release. This amphiphilic mPEG-b-CMP(45) efficiently encapsulated doxorubicin (DOX) via self-assembly in aqueous solution and showed an excellent ability to regulate the release of DOX in response to H(2)O(2) at biologically relevant concentrations (100 μM). These DOX-loaded nanoparticles could easily be internalized into U87 cells and possess the inherent antitumor properties of DOX, while they exhibited much lower cytotoxicity in normal cells HL-7702. Moreover, in many cases, the introduction of selenium caused high cytotoxicity of the materials, but the cytotoxicity results in HL-7702 cells demonstrated the good biocompatibility of mPEG-b-CMP(45). These collective data suggested the potential use of mPEG-b-CMP(45) as a biocompatible and smart drug delivery vehicle. The Royal Society of Chemistry 2019-02-18 /pmc/articles/PMC9060885/ /pubmed/35517302 http://dx.doi.org/10.1039/c8ra10282a Text en This journal is © The Royal Society of Chemistry https://creativecommons.org/licenses/by/3.0/
spellingShingle Chemistry
Yang, Xian-Ling
Xing, Xiu
Li, Jun
Liu, Yan-Hong
Wang, Na
Yu, Xiao-Qi
Enzymatic synthesis of selenium-containing amphiphilic aliphatic polycarbonate as an oxidation-responsive drug delivery vehicle
title Enzymatic synthesis of selenium-containing amphiphilic aliphatic polycarbonate as an oxidation-responsive drug delivery vehicle
title_full Enzymatic synthesis of selenium-containing amphiphilic aliphatic polycarbonate as an oxidation-responsive drug delivery vehicle
title_fullStr Enzymatic synthesis of selenium-containing amphiphilic aliphatic polycarbonate as an oxidation-responsive drug delivery vehicle
title_full_unstemmed Enzymatic synthesis of selenium-containing amphiphilic aliphatic polycarbonate as an oxidation-responsive drug delivery vehicle
title_short Enzymatic synthesis of selenium-containing amphiphilic aliphatic polycarbonate as an oxidation-responsive drug delivery vehicle
title_sort enzymatic synthesis of selenium-containing amphiphilic aliphatic polycarbonate as an oxidation-responsive drug delivery vehicle
topic Chemistry
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9060885/
https://www.ncbi.nlm.nih.gov/pubmed/35517302
http://dx.doi.org/10.1039/c8ra10282a
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