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A Self-Assembling Amphiphilic Peptide Dendrimer-Based Drug Delivery System for Cancer Therapy

Despite being a mainstay of clinical cancer treatment, chemotherapy is limited by its severe side effects and inherent or acquired drug resistance. Nanotechnology-based drug-delivery systems are widely expected to bring new hope for cancer therapy. These systems exploit the ability of nanomaterials...

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Autores principales: Zhu, Dandan, Zhang, Huanle, Huang, Yuanzheng, Lian, Baoping, Ma, Chi, Han, Lili, Chen, Yu, Wu, Shengmei, Li, Ning, Zhang, Wenjie, Liu, Xiaoxuan
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8309127/
https://www.ncbi.nlm.nih.gov/pubmed/34371783
http://dx.doi.org/10.3390/pharmaceutics13071092
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author Zhu, Dandan
Zhang, Huanle
Huang, Yuanzheng
Lian, Baoping
Ma, Chi
Han, Lili
Chen, Yu
Wu, Shengmei
Li, Ning
Zhang, Wenjie
Liu, Xiaoxuan
author_facet Zhu, Dandan
Zhang, Huanle
Huang, Yuanzheng
Lian, Baoping
Ma, Chi
Han, Lili
Chen, Yu
Wu, Shengmei
Li, Ning
Zhang, Wenjie
Liu, Xiaoxuan
author_sort Zhu, Dandan
collection PubMed
description Despite being a mainstay of clinical cancer treatment, chemotherapy is limited by its severe side effects and inherent or acquired drug resistance. Nanotechnology-based drug-delivery systems are widely expected to bring new hope for cancer therapy. These systems exploit the ability of nanomaterials to accumulate and deliver anticancer drugs at the tumor site via the enhanced permeability and retention effect. Here, we established a novel drug-delivery nanosystem based on amphiphilic peptide dendrimers (AmPDs) composed of a hydrophobic alkyl chain and a hydrophilic polylysine dendron with different generations (AmPD KK(2) and AmPD KK(2)K(4)). These AmPDs assembled into nanoassemblies for efficient encapsulation of the anti-cancer drug doxorubicin (DOX). The AmPDs/DOX nanoformulations improved the intracellular uptake and accumulation of DOX in drug-resistant breast cancer cells and increased permeation in 3D multicellular tumor spheroids in comparison with free DOX. Thus, they exerted effective anticancer activity while circumventing drug resistance in 2D and 3D breast cancer models. Interestingly, AmPD KK(2) bearing a smaller peptide dendron encapsulated DOX to form more stable nanoparticles than AmPD KK(2)K(4) bearing a larger peptide dendron, resulting in better cellular uptake, penetration, and anti-proliferative activity. This may be because AmPD KK(2) maintains a better balance between hydrophobicity and hydrophilicity to achieve optimal self-assembly, thereby facilitating more stable drug encapsulation and efficient drug release. Together, our study provides a promising perspective on the design of the safe and efficient cancer drug-delivery nanosystems based on the self-assembling amphiphilic peptide dendrimer.
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spelling pubmed-83091272021-07-25 A Self-Assembling Amphiphilic Peptide Dendrimer-Based Drug Delivery System for Cancer Therapy Zhu, Dandan Zhang, Huanle Huang, Yuanzheng Lian, Baoping Ma, Chi Han, Lili Chen, Yu Wu, Shengmei Li, Ning Zhang, Wenjie Liu, Xiaoxuan Pharmaceutics Article Despite being a mainstay of clinical cancer treatment, chemotherapy is limited by its severe side effects and inherent or acquired drug resistance. Nanotechnology-based drug-delivery systems are widely expected to bring new hope for cancer therapy. These systems exploit the ability of nanomaterials to accumulate and deliver anticancer drugs at the tumor site via the enhanced permeability and retention effect. Here, we established a novel drug-delivery nanosystem based on amphiphilic peptide dendrimers (AmPDs) composed of a hydrophobic alkyl chain and a hydrophilic polylysine dendron with different generations (AmPD KK(2) and AmPD KK(2)K(4)). These AmPDs assembled into nanoassemblies for efficient encapsulation of the anti-cancer drug doxorubicin (DOX). The AmPDs/DOX nanoformulations improved the intracellular uptake and accumulation of DOX in drug-resistant breast cancer cells and increased permeation in 3D multicellular tumor spheroids in comparison with free DOX. Thus, they exerted effective anticancer activity while circumventing drug resistance in 2D and 3D breast cancer models. Interestingly, AmPD KK(2) bearing a smaller peptide dendron encapsulated DOX to form more stable nanoparticles than AmPD KK(2)K(4) bearing a larger peptide dendron, resulting in better cellular uptake, penetration, and anti-proliferative activity. This may be because AmPD KK(2) maintains a better balance between hydrophobicity and hydrophilicity to achieve optimal self-assembly, thereby facilitating more stable drug encapsulation and efficient drug release. Together, our study provides a promising perspective on the design of the safe and efficient cancer drug-delivery nanosystems based on the self-assembling amphiphilic peptide dendrimer. MDPI 2021-07-17 /pmc/articles/PMC8309127/ /pubmed/34371783 http://dx.doi.org/10.3390/pharmaceutics13071092 Text en © 2021 by the authors. https://creativecommons.org/licenses/by/4.0/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 (https://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Zhu, Dandan
Zhang, Huanle
Huang, Yuanzheng
Lian, Baoping
Ma, Chi
Han, Lili
Chen, Yu
Wu, Shengmei
Li, Ning
Zhang, Wenjie
Liu, Xiaoxuan
A Self-Assembling Amphiphilic Peptide Dendrimer-Based Drug Delivery System for Cancer Therapy
title A Self-Assembling Amphiphilic Peptide Dendrimer-Based Drug Delivery System for Cancer Therapy
title_full A Self-Assembling Amphiphilic Peptide Dendrimer-Based Drug Delivery System for Cancer Therapy
title_fullStr A Self-Assembling Amphiphilic Peptide Dendrimer-Based Drug Delivery System for Cancer Therapy
title_full_unstemmed A Self-Assembling Amphiphilic Peptide Dendrimer-Based Drug Delivery System for Cancer Therapy
title_short A Self-Assembling Amphiphilic Peptide Dendrimer-Based Drug Delivery System for Cancer Therapy
title_sort self-assembling amphiphilic peptide dendrimer-based drug delivery system for cancer therapy
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8309127/
https://www.ncbi.nlm.nih.gov/pubmed/34371783
http://dx.doi.org/10.3390/pharmaceutics13071092
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