Cargando…

Folic Acid Conjugated δ-Valerolactone-Poly(ethylene glycol) Based Triblock Copolymer as a Promising Carrier for Targeted Doxorubicin Delivery

The aim of this study is to test the hypothesis that the newly synthesized poly(δ-valerolactone)/poly(ethylene glycol)/poly(δ-valerolactone) (VEV) copolymer grafted with folic acid would impart targetability and further enhance the anti-tumor efficacy of doxorubicin (DOX). Here, folic acid conjugate...

Descripción completa

Detalles Bibliográficos
Autores principales: Nair K, Lekha, Jagadeeshan, Sankar, Nair S, Asha, Kumar, G. S. Vinod
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2013
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3749165/
https://www.ncbi.nlm.nih.gov/pubmed/23990912
http://dx.doi.org/10.1371/journal.pone.0070697
_version_ 1782281158391758848
author Nair K, Lekha
Jagadeeshan, Sankar
Nair S, Asha
Kumar, G. S. Vinod
author_facet Nair K, Lekha
Jagadeeshan, Sankar
Nair S, Asha
Kumar, G. S. Vinod
author_sort Nair K, Lekha
collection PubMed
description The aim of this study is to test the hypothesis that the newly synthesized poly(δ-valerolactone)/poly(ethylene glycol)/poly(δ-valerolactone) (VEV) copolymer grafted with folic acid would impart targetability and further enhance the anti-tumor efficacy of doxorubicin (DOX). Here, folic acid conjugated VEV (VEV-FOL) was synthesized by a modified esterification method and characterized using IR and NMR. DOX loaded VEV-FOL micelles were synthesized using a novel solvent evaporation method and were obtained with a mean diameter of 97 nm with high encapsulation efficiency and sustained in vitro release profile. Comparative studies of polymer micelles with and without folate for cellular uptake and cytotoxicity were done on folate receptor-positive breast cancer cell line, MDAMB231. The intracellular uptake tests showed significant increase in folate micellar uptake when compared to non-folate-mediated micelles. MTT assay followed by apoptosis assays clearly indicated that folate decorated micelles showed significantly better cytotoxicity (IC(50) = 0.014 µM) and efficiency to induce apoptosis than other treated groups. Moreover, a significant G2/M arrest was induced by DOX loaded VEV-FOL micelles at a concentration where free drug failed to show any activity. Thus, our results show that the folic acid-labeled VEV copolymer is a promising biomaterial with controlled and sustainable tumor targeting ability for anticancer drugs which can open new frontiers in the area of targeted chemotherapy.
format Online
Article
Text
id pubmed-3749165
institution National Center for Biotechnology Information
language English
publishDate 2013
publisher Public Library of Science
record_format MEDLINE/PubMed
spelling pubmed-37491652013-08-29 Folic Acid Conjugated δ-Valerolactone-Poly(ethylene glycol) Based Triblock Copolymer as a Promising Carrier for Targeted Doxorubicin Delivery Nair K, Lekha Jagadeeshan, Sankar Nair S, Asha Kumar, G. S. Vinod PLoS One Research Article The aim of this study is to test the hypothesis that the newly synthesized poly(δ-valerolactone)/poly(ethylene glycol)/poly(δ-valerolactone) (VEV) copolymer grafted with folic acid would impart targetability and further enhance the anti-tumor efficacy of doxorubicin (DOX). Here, folic acid conjugated VEV (VEV-FOL) was synthesized by a modified esterification method and characterized using IR and NMR. DOX loaded VEV-FOL micelles were synthesized using a novel solvent evaporation method and were obtained with a mean diameter of 97 nm with high encapsulation efficiency and sustained in vitro release profile. Comparative studies of polymer micelles with and without folate for cellular uptake and cytotoxicity were done on folate receptor-positive breast cancer cell line, MDAMB231. The intracellular uptake tests showed significant increase in folate micellar uptake when compared to non-folate-mediated micelles. MTT assay followed by apoptosis assays clearly indicated that folate decorated micelles showed significantly better cytotoxicity (IC(50) = 0.014 µM) and efficiency to induce apoptosis than other treated groups. Moreover, a significant G2/M arrest was induced by DOX loaded VEV-FOL micelles at a concentration where free drug failed to show any activity. Thus, our results show that the folic acid-labeled VEV copolymer is a promising biomaterial with controlled and sustainable tumor targeting ability for anticancer drugs which can open new frontiers in the area of targeted chemotherapy. Public Library of Science 2013-08-21 /pmc/articles/PMC3749165/ /pubmed/23990912 http://dx.doi.org/10.1371/journal.pone.0070697 Text en © 2013 Nair K et al http://creativecommons.org/licenses/by/4.0/ This is an open-access article distributed under the terms of the Creative Commons Attribution License, which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are properly credited.
spellingShingle Research Article
Nair K, Lekha
Jagadeeshan, Sankar
Nair S, Asha
Kumar, G. S. Vinod
Folic Acid Conjugated δ-Valerolactone-Poly(ethylene glycol) Based Triblock Copolymer as a Promising Carrier for Targeted Doxorubicin Delivery
title Folic Acid Conjugated δ-Valerolactone-Poly(ethylene glycol) Based Triblock Copolymer as a Promising Carrier for Targeted Doxorubicin Delivery
title_full Folic Acid Conjugated δ-Valerolactone-Poly(ethylene glycol) Based Triblock Copolymer as a Promising Carrier for Targeted Doxorubicin Delivery
title_fullStr Folic Acid Conjugated δ-Valerolactone-Poly(ethylene glycol) Based Triblock Copolymer as a Promising Carrier for Targeted Doxorubicin Delivery
title_full_unstemmed Folic Acid Conjugated δ-Valerolactone-Poly(ethylene glycol) Based Triblock Copolymer as a Promising Carrier for Targeted Doxorubicin Delivery
title_short Folic Acid Conjugated δ-Valerolactone-Poly(ethylene glycol) Based Triblock Copolymer as a Promising Carrier for Targeted Doxorubicin Delivery
title_sort folic acid conjugated δ-valerolactone-poly(ethylene glycol) based triblock copolymer as a promising carrier for targeted doxorubicin delivery
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3749165/
https://www.ncbi.nlm.nih.gov/pubmed/23990912
http://dx.doi.org/10.1371/journal.pone.0070697
work_keys_str_mv AT nairklekha folicacidconjugateddvalerolactonepolyethyleneglycolbasedtriblockcopolymerasapromisingcarrierfortargeteddoxorubicindelivery
AT jagadeeshansankar folicacidconjugateddvalerolactonepolyethyleneglycolbasedtriblockcopolymerasapromisingcarrierfortargeteddoxorubicindelivery
AT nairsasha folicacidconjugateddvalerolactonepolyethyleneglycolbasedtriblockcopolymerasapromisingcarrierfortargeteddoxorubicindelivery
AT kumargsvinod folicacidconjugateddvalerolactonepolyethyleneglycolbasedtriblockcopolymerasapromisingcarrierfortargeteddoxorubicindelivery