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Development of Folate-Functionalized PEGylated Zein Nanoparticles for Ligand-Directed Delivery of Paclitaxel

In this study, we investigated the active targeted delivery of a hydrophobic drug, paclitaxel (PTX), via receptor-mediated endocytosis by folate receptors expressed on cancer cells using a protein-based nanoparticle system. PTX was loaded on zein nanoparticles and conjugated with folate (PTX/Zein-FA...

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Autores principales: Soe, Zar Chi, Ou, Wenquan, Gautam, Milan, Poudel, Kishwor, Kim, Bo Kyun, Pham, Le Minh, Phung, Cao Dai, Jeong, Jee-Heon, Jin, Sung Giu, Choi, Han-Gon, Ku, Sae Kwang, Yong, Chul Soon, Kim, Jong Oh
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2019
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6920870/
https://www.ncbi.nlm.nih.gov/pubmed/31671569
http://dx.doi.org/10.3390/pharmaceutics11110562
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author Soe, Zar Chi
Ou, Wenquan
Gautam, Milan
Poudel, Kishwor
Kim, Bo Kyun
Pham, Le Minh
Phung, Cao Dai
Jeong, Jee-Heon
Jin, Sung Giu
Choi, Han-Gon
Ku, Sae Kwang
Yong, Chul Soon
Kim, Jong Oh
author_facet Soe, Zar Chi
Ou, Wenquan
Gautam, Milan
Poudel, Kishwor
Kim, Bo Kyun
Pham, Le Minh
Phung, Cao Dai
Jeong, Jee-Heon
Jin, Sung Giu
Choi, Han-Gon
Ku, Sae Kwang
Yong, Chul Soon
Kim, Jong Oh
author_sort Soe, Zar Chi
collection PubMed
description In this study, we investigated the active targeted delivery of a hydrophobic drug, paclitaxel (PTX), via receptor-mediated endocytosis by folate receptors expressed on cancer cells using a protein-based nanoparticle system. PTX was loaded on zein nanoparticles and conjugated with folate (PTX/Zein-FA) to estimate its chemotherapeutic efficacy in folate receptor-expressing KB cancer cells. PTX/Zein-FA nanoparticles were successfully developed, with a nanoparticle size of ~180 nm and narrow polydispersity index (~0.22). Accelerated release of PTX in an acidic environment was observed for PTX/Zein-FA. An in vitro cellular study of PTX/Zein-FAs in KB cells suggested that PTX/Zein-FA improved the cytotoxic activity of PTX on folate receptors overexpressed in cancer cells by inducing proapoptotic proteins and inhibiting anti-apoptotic proteins. In addition, PTX/Zein-FA exhibited anti-migratory properties and could alter the cell cycle profile of KB cells. A549 cells, which are folate receptor-negative cancer cells, showed no significant enhancement in the in vitro cellular activities of PTX/Zein-FA. We describe the antitumor efficacy of PTX/Zein-FA in KB tumor-bearing mice with minimum toxicity in healthy organs, and the results were confirmed in comparison with free drug and non-targeted nanoparticles.
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spelling pubmed-69208702019-12-24 Development of Folate-Functionalized PEGylated Zein Nanoparticles for Ligand-Directed Delivery of Paclitaxel Soe, Zar Chi Ou, Wenquan Gautam, Milan Poudel, Kishwor Kim, Bo Kyun Pham, Le Minh Phung, Cao Dai Jeong, Jee-Heon Jin, Sung Giu Choi, Han-Gon Ku, Sae Kwang Yong, Chul Soon Kim, Jong Oh Pharmaceutics Article In this study, we investigated the active targeted delivery of a hydrophobic drug, paclitaxel (PTX), via receptor-mediated endocytosis by folate receptors expressed on cancer cells using a protein-based nanoparticle system. PTX was loaded on zein nanoparticles and conjugated with folate (PTX/Zein-FA) to estimate its chemotherapeutic efficacy in folate receptor-expressing KB cancer cells. PTX/Zein-FA nanoparticles were successfully developed, with a nanoparticle size of ~180 nm and narrow polydispersity index (~0.22). Accelerated release of PTX in an acidic environment was observed for PTX/Zein-FA. An in vitro cellular study of PTX/Zein-FAs in KB cells suggested that PTX/Zein-FA improved the cytotoxic activity of PTX on folate receptors overexpressed in cancer cells by inducing proapoptotic proteins and inhibiting anti-apoptotic proteins. In addition, PTX/Zein-FA exhibited anti-migratory properties and could alter the cell cycle profile of KB cells. A549 cells, which are folate receptor-negative cancer cells, showed no significant enhancement in the in vitro cellular activities of PTX/Zein-FA. We describe the antitumor efficacy of PTX/Zein-FA in KB tumor-bearing mice with minimum toxicity in healthy organs, and the results were confirmed in comparison with free drug and non-targeted nanoparticles. MDPI 2019-10-30 /pmc/articles/PMC6920870/ /pubmed/31671569 http://dx.doi.org/10.3390/pharmaceutics11110562 Text en © 2019 by the authors. Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (http://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Soe, Zar Chi
Ou, Wenquan
Gautam, Milan
Poudel, Kishwor
Kim, Bo Kyun
Pham, Le Minh
Phung, Cao Dai
Jeong, Jee-Heon
Jin, Sung Giu
Choi, Han-Gon
Ku, Sae Kwang
Yong, Chul Soon
Kim, Jong Oh
Development of Folate-Functionalized PEGylated Zein Nanoparticles for Ligand-Directed Delivery of Paclitaxel
title Development of Folate-Functionalized PEGylated Zein Nanoparticles for Ligand-Directed Delivery of Paclitaxel
title_full Development of Folate-Functionalized PEGylated Zein Nanoparticles for Ligand-Directed Delivery of Paclitaxel
title_fullStr Development of Folate-Functionalized PEGylated Zein Nanoparticles for Ligand-Directed Delivery of Paclitaxel
title_full_unstemmed Development of Folate-Functionalized PEGylated Zein Nanoparticles for Ligand-Directed Delivery of Paclitaxel
title_short Development of Folate-Functionalized PEGylated Zein Nanoparticles for Ligand-Directed Delivery of Paclitaxel
title_sort development of folate-functionalized pegylated zein nanoparticles for ligand-directed delivery of paclitaxel
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6920870/
https://www.ncbi.nlm.nih.gov/pubmed/31671569
http://dx.doi.org/10.3390/pharmaceutics11110562
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