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Peptide-Mediated Tumor Targeting by a Degradable Nano Gene Delivery Vector Based on Pluronic-Modified Polyethylenimine

Polyethylenimine (PEI) is considered to be a promising non-viral gene delivery vector. To solve the toxicity versus efficacy and tumor-targeting challenges of PEI used as gene delivery vector, we constructed a novel non-viral vector DR5-TAT-modified Pluronic-PEI (Pluronic-PEI-DR5-TAT), which was bas...

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Autores principales: Wu, Zhaoyong, Zhan, Shuyu, Fan, Wei, Ding, Xueying, Wu, Xin, Zhang, Wei, Fu, Yinghua, Huang, Yueyan, Huang, Xuan, Chen, Rubing, Li, Mingjuan, Xu, Ningyin, Zheng, Yongxia, Ding, Baoyue
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Springer US 2016
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4773318/
https://www.ncbi.nlm.nih.gov/pubmed/26932761
http://dx.doi.org/10.1186/s11671-016-1337-5
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author Wu, Zhaoyong
Zhan, Shuyu
Fan, Wei
Ding, Xueying
Wu, Xin
Zhang, Wei
Fu, Yinghua
Huang, Yueyan
Huang, Xuan
Chen, Rubing
Li, Mingjuan
Xu, Ningyin
Zheng, Yongxia
Ding, Baoyue
author_facet Wu, Zhaoyong
Zhan, Shuyu
Fan, Wei
Ding, Xueying
Wu, Xin
Zhang, Wei
Fu, Yinghua
Huang, Yueyan
Huang, Xuan
Chen, Rubing
Li, Mingjuan
Xu, Ningyin
Zheng, Yongxia
Ding, Baoyue
author_sort Wu, Zhaoyong
collection PubMed
description Polyethylenimine (PEI) is considered to be a promising non-viral gene delivery vector. To solve the toxicity versus efficacy and tumor-targeting challenges of PEI used as gene delivery vector, we constructed a novel non-viral vector DR5-TAT-modified Pluronic-PEI (Pluronic-PEI-DR5-TAT), which was based on the attachment of low-molecular-weight polyethylenimine (LMW-PEI) to the amphiphilic polymer Pluronic to prepare Pluronic-modified LMW-PEI (Pluronic-PEI). This was then conjugated to a multifunctional peptide containing a cell-penetrating peptide (TAT) and a synthetic peptide that would bind to DR5—a receptor that is overexpressed in cancer cells. The vector showed controlled degradation, favorable DNA condensation and protection performance. The Pluronic-PEI-DR5-TAT/DNA complexes at an N/P ratio of 15:1 were spherical nanoparticles of 122 ± 11.6 nm and a zeta potential of about 22 ± 2.8 mV. In vitro biological characterization results indicated that Pluronic-PEI-DR5-TAT/DNA complexes had a higher specificity for the DR5 receptor and were taken up more efficiently by tumor cells than normal cells, compared to complexes formed with PEI 25 kDa or Pluronic-PEI. Thus, the novel complexes showed much lower cytotoxicity to normal cells and higher gene transfection efficiency in tumor cells than that exhibited by PEI 25 kDa and Pluronic-PEI. In summary, our novel, degradable non-viral tumor-targeting vector is a promising candidate for use in gene therapy.
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spelling pubmed-47733182016-03-29 Peptide-Mediated Tumor Targeting by a Degradable Nano Gene Delivery Vector Based on Pluronic-Modified Polyethylenimine Wu, Zhaoyong Zhan, Shuyu Fan, Wei Ding, Xueying Wu, Xin Zhang, Wei Fu, Yinghua Huang, Yueyan Huang, Xuan Chen, Rubing Li, Mingjuan Xu, Ningyin Zheng, Yongxia Ding, Baoyue Nanoscale Res Lett Nano Express Polyethylenimine (PEI) is considered to be a promising non-viral gene delivery vector. To solve the toxicity versus efficacy and tumor-targeting challenges of PEI used as gene delivery vector, we constructed a novel non-viral vector DR5-TAT-modified Pluronic-PEI (Pluronic-PEI-DR5-TAT), which was based on the attachment of low-molecular-weight polyethylenimine (LMW-PEI) to the amphiphilic polymer Pluronic to prepare Pluronic-modified LMW-PEI (Pluronic-PEI). This was then conjugated to a multifunctional peptide containing a cell-penetrating peptide (TAT) and a synthetic peptide that would bind to DR5—a receptor that is overexpressed in cancer cells. The vector showed controlled degradation, favorable DNA condensation and protection performance. The Pluronic-PEI-DR5-TAT/DNA complexes at an N/P ratio of 15:1 were spherical nanoparticles of 122 ± 11.6 nm and a zeta potential of about 22 ± 2.8 mV. In vitro biological characterization results indicated that Pluronic-PEI-DR5-TAT/DNA complexes had a higher specificity for the DR5 receptor and were taken up more efficiently by tumor cells than normal cells, compared to complexes formed with PEI 25 kDa or Pluronic-PEI. Thus, the novel complexes showed much lower cytotoxicity to normal cells and higher gene transfection efficiency in tumor cells than that exhibited by PEI 25 kDa and Pluronic-PEI. In summary, our novel, degradable non-viral tumor-targeting vector is a promising candidate for use in gene therapy. Springer US 2016-03-01 /pmc/articles/PMC4773318/ /pubmed/26932761 http://dx.doi.org/10.1186/s11671-016-1337-5 Text en © Wu et al. 2016 Open AccessThis article is distributed under the terms of the Creative Commons Attribution 4.0 International License (http://creativecommons.org/licenses/by/4.0/), which permits unrestricted use, distribution, and reproduction in any medium, provided you give appropriate credit to the original author(s) and the source, provide a link to the Creative Commons license, and indicate if changes were made.
spellingShingle Nano Express
Wu, Zhaoyong
Zhan, Shuyu
Fan, Wei
Ding, Xueying
Wu, Xin
Zhang, Wei
Fu, Yinghua
Huang, Yueyan
Huang, Xuan
Chen, Rubing
Li, Mingjuan
Xu, Ningyin
Zheng, Yongxia
Ding, Baoyue
Peptide-Mediated Tumor Targeting by a Degradable Nano Gene Delivery Vector Based on Pluronic-Modified Polyethylenimine
title Peptide-Mediated Tumor Targeting by a Degradable Nano Gene Delivery Vector Based on Pluronic-Modified Polyethylenimine
title_full Peptide-Mediated Tumor Targeting by a Degradable Nano Gene Delivery Vector Based on Pluronic-Modified Polyethylenimine
title_fullStr Peptide-Mediated Tumor Targeting by a Degradable Nano Gene Delivery Vector Based on Pluronic-Modified Polyethylenimine
title_full_unstemmed Peptide-Mediated Tumor Targeting by a Degradable Nano Gene Delivery Vector Based on Pluronic-Modified Polyethylenimine
title_short Peptide-Mediated Tumor Targeting by a Degradable Nano Gene Delivery Vector Based on Pluronic-Modified Polyethylenimine
title_sort peptide-mediated tumor targeting by a degradable nano gene delivery vector based on pluronic-modified polyethylenimine
topic Nano Express
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4773318/
https://www.ncbi.nlm.nih.gov/pubmed/26932761
http://dx.doi.org/10.1186/s11671-016-1337-5
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