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A Redox-Sensitive Micelle-Like Nanoparticle Self-Assembled from Amphiphilic Adriamycin-Human Serum Albumin Conjugates for Tumor Targeted Therapy

The application of chemotherapeutic drug adriamycin (ADR) in cancer therapy is limited by its side effects like high toxicity and insolubility. Nanomedicine offers new hope for overcoming the shortcomings. But how to increase in vivo stability and to control intracellular drug release is a key issue...

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Autores principales: Chen, Lin, Chen, Feng, Zhao, Mengxin, Zhu, Xiandi, Ke, Changhong, Yu, Jiangming, Yan, Zhiqiang, Zhang, Fulei, Sun, Yun, Chen, Di, Jiang, Cheng, Zhao, Xianxian, Gao, Yong, Guo, Shangjing, Li, Wei
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Hindawi Publishing Corporation 2015
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4444569/
https://www.ncbi.nlm.nih.gov/pubmed/26075280
http://dx.doi.org/10.1155/2015/987404
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author Chen, Lin
Chen, Feng
Zhao, Mengxin
Zhu, Xiandi
Ke, Changhong
Yu, Jiangming
Yan, Zhiqiang
Zhang, Fulei
Sun, Yun
Chen, Di
Jiang, Cheng
Zhao, Xianxian
Gao, Yong
Guo, Shangjing
Li, Wei
author_facet Chen, Lin
Chen, Feng
Zhao, Mengxin
Zhu, Xiandi
Ke, Changhong
Yu, Jiangming
Yan, Zhiqiang
Zhang, Fulei
Sun, Yun
Chen, Di
Jiang, Cheng
Zhao, Xianxian
Gao, Yong
Guo, Shangjing
Li, Wei
author_sort Chen, Lin
collection PubMed
description The application of chemotherapeutic drug adriamycin (ADR) in cancer therapy is limited by its side effects like high toxicity and insolubility. Nanomedicine offers new hope for overcoming the shortcomings. But how to increase in vivo stability and to control intracellular drug release is a key issue for nano-based formulations. Herein, the hydrophobic ADR was successfully linked to the biocompatible human serum albumin (HSA) by disulfide bond 3-(2-pyridyldithio) propionyl hydrazide (PDPH), resulting in amphiphilic HSA-ADR. The novel ADR-HSA micellar NPs which were thus assembled exhibited a well-defined stable core shell structure with glutathione (GSH) sensitive linkers. The stable PDPH linkers at extracellular level were broken by GSH at intracellular level with a controlled ADR release profile. The in vitro cytotoxicity against gastric cancer cells (NCI-N87) was obviously enhanced by such redox-sensitive ADR-HSA NPs. Additionally, as observed by IVIS Lumina II Imaging System (Xenogen), the intratumor accumulation of ADR-HSA NPs was much higher than that of HSA/ADR NPs due to its high stability. Consequently, the in vivo tumor inhibition was significantly promoted after intravenous administration to the Balb/c nude mice bearing gastric tumors. These in vitro/vivo results indicated that disulfide-bond-containing ADR-HSA NPs were an effective nanodrug delivery system for cancer therapy.
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spelling pubmed-44445692015-06-14 A Redox-Sensitive Micelle-Like Nanoparticle Self-Assembled from Amphiphilic Adriamycin-Human Serum Albumin Conjugates for Tumor Targeted Therapy Chen, Lin Chen, Feng Zhao, Mengxin Zhu, Xiandi Ke, Changhong Yu, Jiangming Yan, Zhiqiang Zhang, Fulei Sun, Yun Chen, Di Jiang, Cheng Zhao, Xianxian Gao, Yong Guo, Shangjing Li, Wei Biomed Res Int Research Article The application of chemotherapeutic drug adriamycin (ADR) in cancer therapy is limited by its side effects like high toxicity and insolubility. Nanomedicine offers new hope for overcoming the shortcomings. But how to increase in vivo stability and to control intracellular drug release is a key issue for nano-based formulations. Herein, the hydrophobic ADR was successfully linked to the biocompatible human serum albumin (HSA) by disulfide bond 3-(2-pyridyldithio) propionyl hydrazide (PDPH), resulting in amphiphilic HSA-ADR. The novel ADR-HSA micellar NPs which were thus assembled exhibited a well-defined stable core shell structure with glutathione (GSH) sensitive linkers. The stable PDPH linkers at extracellular level were broken by GSH at intracellular level with a controlled ADR release profile. The in vitro cytotoxicity against gastric cancer cells (NCI-N87) was obviously enhanced by such redox-sensitive ADR-HSA NPs. Additionally, as observed by IVIS Lumina II Imaging System (Xenogen), the intratumor accumulation of ADR-HSA NPs was much higher than that of HSA/ADR NPs due to its high stability. Consequently, the in vivo tumor inhibition was significantly promoted after intravenous administration to the Balb/c nude mice bearing gastric tumors. These in vitro/vivo results indicated that disulfide-bond-containing ADR-HSA NPs were an effective nanodrug delivery system for cancer therapy. Hindawi Publishing Corporation 2015 2015-05-13 /pmc/articles/PMC4444569/ /pubmed/26075280 http://dx.doi.org/10.1155/2015/987404 Text en Copyright © 2015 Lin Chen et al. https://creativecommons.org/licenses/by/3.0/ This is an open access article distributed under the Creative Commons Attribution License, which permits unrestricted use, distribution, and reproduction in any medium, provided the original work is properly cited.
spellingShingle Research Article
Chen, Lin
Chen, Feng
Zhao, Mengxin
Zhu, Xiandi
Ke, Changhong
Yu, Jiangming
Yan, Zhiqiang
Zhang, Fulei
Sun, Yun
Chen, Di
Jiang, Cheng
Zhao, Xianxian
Gao, Yong
Guo, Shangjing
Li, Wei
A Redox-Sensitive Micelle-Like Nanoparticle Self-Assembled from Amphiphilic Adriamycin-Human Serum Albumin Conjugates for Tumor Targeted Therapy
title A Redox-Sensitive Micelle-Like Nanoparticle Self-Assembled from Amphiphilic Adriamycin-Human Serum Albumin Conjugates for Tumor Targeted Therapy
title_full A Redox-Sensitive Micelle-Like Nanoparticle Self-Assembled from Amphiphilic Adriamycin-Human Serum Albumin Conjugates for Tumor Targeted Therapy
title_fullStr A Redox-Sensitive Micelle-Like Nanoparticle Self-Assembled from Amphiphilic Adriamycin-Human Serum Albumin Conjugates for Tumor Targeted Therapy
title_full_unstemmed A Redox-Sensitive Micelle-Like Nanoparticle Self-Assembled from Amphiphilic Adriamycin-Human Serum Albumin Conjugates for Tumor Targeted Therapy
title_short A Redox-Sensitive Micelle-Like Nanoparticle Self-Assembled from Amphiphilic Adriamycin-Human Serum Albumin Conjugates for Tumor Targeted Therapy
title_sort redox-sensitive micelle-like nanoparticle self-assembled from amphiphilic adriamycin-human serum albumin conjugates for tumor targeted therapy
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4444569/
https://www.ncbi.nlm.nih.gov/pubmed/26075280
http://dx.doi.org/10.1155/2015/987404
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