Cargando…

PEG–Polypeptide Block Copolymers as pH-Responsive Endosome-Solubilizing Drug Nanocarriers

[Image: see text] Herein we report the potential of click chemistry-modified polypeptide-based block copolymers for the facile fabrication of pH-sensitive nanoscale drug delivery systems. PEG–polypeptide copolymers with pendant amine chains were synthesized by combining N-carboxyanhydride-based ring...

Descripción completa

Detalles Bibliográficos
Autores principales: Quadir, Mohiuddin A., Morton, Stephen W., Deng, Zhou J., Shopsowitz, Kevin E., Murphy, Ryan P., Epps, Thomas H., Hammond, Paula T.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: American Chemical Society 2014
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4096223/
https://www.ncbi.nlm.nih.gov/pubmed/24813025
http://dx.doi.org/10.1021/mp500162w
_version_ 1782326125015334912
author Quadir, Mohiuddin A.
Morton, Stephen W.
Deng, Zhou J.
Shopsowitz, Kevin E.
Murphy, Ryan P.
Epps, Thomas H.
Hammond, Paula T.
author_facet Quadir, Mohiuddin A.
Morton, Stephen W.
Deng, Zhou J.
Shopsowitz, Kevin E.
Murphy, Ryan P.
Epps, Thomas H.
Hammond, Paula T.
author_sort Quadir, Mohiuddin A.
collection PubMed
description [Image: see text] Herein we report the potential of click chemistry-modified polypeptide-based block copolymers for the facile fabrication of pH-sensitive nanoscale drug delivery systems. PEG–polypeptide copolymers with pendant amine chains were synthesized by combining N-carboxyanhydride-based ring-opening polymerization with post-functionalization using azide–alkyne cycloaddition. The synthesized block copolymers contain a polypeptide block with amine-functional side groups and were found to self-assemble into stable polymersomes and disassemble in a pH-responsive manner under a range of biologically relevant conditions. The self-assembly of these block copolymers yields nanometer-scale vesicular structures that are able to encapsulate hydrophilic cytotoxic agents like doxorubicin at physiological pH but that fall apart spontaneously at endosomal pH levels after cellular uptake. When drug-encapsulated copolymer assemblies were delivered systemically, significant levels of tumor accumulation were achieved, with efficacy against the triple-negative breast cancer cell line, MDA-MB-468, and suppression of tumor growth in an in vivo mouse model.
format Online
Article
Text
id pubmed-4096223
institution National Center for Biotechnology Information
language English
publishDate 2014
publisher American Chemical Society
record_format MEDLINE/PubMed
spelling pubmed-40962232015-05-12 PEG–Polypeptide Block Copolymers as pH-Responsive Endosome-Solubilizing Drug Nanocarriers Quadir, Mohiuddin A. Morton, Stephen W. Deng, Zhou J. Shopsowitz, Kevin E. Murphy, Ryan P. Epps, Thomas H. Hammond, Paula T. Mol Pharm [Image: see text] Herein we report the potential of click chemistry-modified polypeptide-based block copolymers for the facile fabrication of pH-sensitive nanoscale drug delivery systems. PEG–polypeptide copolymers with pendant amine chains were synthesized by combining N-carboxyanhydride-based ring-opening polymerization with post-functionalization using azide–alkyne cycloaddition. The synthesized block copolymers contain a polypeptide block with amine-functional side groups and were found to self-assemble into stable polymersomes and disassemble in a pH-responsive manner under a range of biologically relevant conditions. The self-assembly of these block copolymers yields nanometer-scale vesicular structures that are able to encapsulate hydrophilic cytotoxic agents like doxorubicin at physiological pH but that fall apart spontaneously at endosomal pH levels after cellular uptake. When drug-encapsulated copolymer assemblies were delivered systemically, significant levels of tumor accumulation were achieved, with efficacy against the triple-negative breast cancer cell line, MDA-MB-468, and suppression of tumor growth in an in vivo mouse model. American Chemical Society 2014-05-12 2014-07-07 /pmc/articles/PMC4096223/ /pubmed/24813025 http://dx.doi.org/10.1021/mp500162w Text en Copyright © 2014 American Chemical Society Terms of Use (http://pubs.acs.org/page/policy/authorchoice_termsofuse.html)
spellingShingle Quadir, Mohiuddin A.
Morton, Stephen W.
Deng, Zhou J.
Shopsowitz, Kevin E.
Murphy, Ryan P.
Epps, Thomas H.
Hammond, Paula T.
PEG–Polypeptide Block Copolymers as pH-Responsive Endosome-Solubilizing Drug Nanocarriers
title PEG–Polypeptide Block Copolymers as pH-Responsive Endosome-Solubilizing Drug Nanocarriers
title_full PEG–Polypeptide Block Copolymers as pH-Responsive Endosome-Solubilizing Drug Nanocarriers
title_fullStr PEG–Polypeptide Block Copolymers as pH-Responsive Endosome-Solubilizing Drug Nanocarriers
title_full_unstemmed PEG–Polypeptide Block Copolymers as pH-Responsive Endosome-Solubilizing Drug Nanocarriers
title_short PEG–Polypeptide Block Copolymers as pH-Responsive Endosome-Solubilizing Drug Nanocarriers
title_sort peg–polypeptide block copolymers as ph-responsive endosome-solubilizing drug nanocarriers
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4096223/
https://www.ncbi.nlm.nih.gov/pubmed/24813025
http://dx.doi.org/10.1021/mp500162w
work_keys_str_mv AT quadirmohiuddina pegpolypeptideblockcopolymersasphresponsiveendosomesolubilizingdrugnanocarriers
AT mortonstephenw pegpolypeptideblockcopolymersasphresponsiveendosomesolubilizingdrugnanocarriers
AT dengzhouj pegpolypeptideblockcopolymersasphresponsiveendosomesolubilizingdrugnanocarriers
AT shopsowitzkevine pegpolypeptideblockcopolymersasphresponsiveendosomesolubilizingdrugnanocarriers
AT murphyryanp pegpolypeptideblockcopolymersasphresponsiveendosomesolubilizingdrugnanocarriers
AT eppsthomash pegpolypeptideblockcopolymersasphresponsiveendosomesolubilizingdrugnanocarriers
AT hammondpaulat pegpolypeptideblockcopolymersasphresponsiveendosomesolubilizingdrugnanocarriers