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Heterogeneous dimer peptide-conjugated polylysine dendrimer-Fe(3)O(4) composite as a novel nanoscale molecular probe for early diagnosis and therapy in hepatocellular carcinoma
A novel nanoscale molecular probe is formulated in order to reduce toxicity and side effects of antitumor drug doxorubicin (DOX) in normal tissues and to enhance the detection sensitivity during early imaging diagnosis. The mechanism involves a specific targeting of Arg-Gly-Asp peptide (RGD)-GX1 het...
Autores principales: | , , , , , , , , |
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Formato: | Online Artículo Texto |
Lenguaje: | English |
Publicado: |
Dove Medical Press
2017
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Materias: | |
Acceso en línea: | https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5315215/ https://www.ncbi.nlm.nih.gov/pubmed/28243083 http://dx.doi.org/10.2147/IJN.S126887 |
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author | Shen, Jian-Min Li, Xin-Xin Fan, Lin-Lan Zhou, Xing Han, Ji-Min Jia, Ming-Kang Wu, Liang-Fan Zhang, Xiao-Xue Chen, Jing |
author_facet | Shen, Jian-Min Li, Xin-Xin Fan, Lin-Lan Zhou, Xing Han, Ji-Min Jia, Ming-Kang Wu, Liang-Fan Zhang, Xiao-Xue Chen, Jing |
author_sort | Shen, Jian-Min |
collection | PubMed |
description | A novel nanoscale molecular probe is formulated in order to reduce toxicity and side effects of antitumor drug doxorubicin (DOX) in normal tissues and to enhance the detection sensitivity during early imaging diagnosis. The mechanism involves a specific targeting of Arg-Gly-Asp peptide (RGD)-GX1 heterogeneous dimer peptide-conjugated dendrigraft poly-l-lysine (DGL)–magnetic nanoparticle (MNP) composite by α(v)β(3)-integrin/vasculature endothelium receptor-mediated synergetic effect. The physicochemical properties of the nanoprobe were characterized by using transmission electron microscope, Fourier transform infrared spectroscopy, X-ray diffraction, dynamic light scattering (DLS), and vibrating sample magnetometer. The average diameter of the resulting MNP–DGL–RGD-GX1–DOX nanoparticles (NPs) was ~150−160 nm by DLS under simulate physiological medium. In the present experimental system, the loading amount of DOX on NPs accounted for 414.4 mg/g for MNP–DGL–RGD-GX1–DOX. The results of cytotoxicity, flow cytometry, and cellular uptake consistently indicated that the MNP–DGL–RGD-GX1–DOX NPs were inclined to target HepG2 cells in selected three kinds of cells. In vitro exploration of molecular mechanism revealed that cell apoptosis was associated with the overexpression of Fas protein and the significant activation of caspase-3. In vivo magnetic resonance imaging and biodistribution study showed that the MNP–DGL–RGD-GX1–DOX formulation had high affinity to the tumor tissue, leading to more aggregation of NPs in the tumor. In vivo antitumor efficacy research verified that MNP–DGL–RGD-GX1–DOX NPs possessed significant antitumor activity and the tumor inhibitory rate reached 78.5%. These results suggested that NPs could be promising in application to early diagnosis and therapy in hepatocellular carcinoma as a specific nanoprobe. |
format | Online Article Text |
id | pubmed-5315215 |
institution | National Center for Biotechnology Information |
language | English |
publishDate | 2017 |
publisher | Dove Medical Press |
record_format | MEDLINE/PubMed |
spelling | pubmed-53152152017-02-27 Heterogeneous dimer peptide-conjugated polylysine dendrimer-Fe(3)O(4) composite as a novel nanoscale molecular probe for early diagnosis and therapy in hepatocellular carcinoma Shen, Jian-Min Li, Xin-Xin Fan, Lin-Lan Zhou, Xing Han, Ji-Min Jia, Ming-Kang Wu, Liang-Fan Zhang, Xiao-Xue Chen, Jing Int J Nanomedicine Original Research A novel nanoscale molecular probe is formulated in order to reduce toxicity and side effects of antitumor drug doxorubicin (DOX) in normal tissues and to enhance the detection sensitivity during early imaging diagnosis. The mechanism involves a specific targeting of Arg-Gly-Asp peptide (RGD)-GX1 heterogeneous dimer peptide-conjugated dendrigraft poly-l-lysine (DGL)–magnetic nanoparticle (MNP) composite by α(v)β(3)-integrin/vasculature endothelium receptor-mediated synergetic effect. The physicochemical properties of the nanoprobe were characterized by using transmission electron microscope, Fourier transform infrared spectroscopy, X-ray diffraction, dynamic light scattering (DLS), and vibrating sample magnetometer. The average diameter of the resulting MNP–DGL–RGD-GX1–DOX nanoparticles (NPs) was ~150−160 nm by DLS under simulate physiological medium. In the present experimental system, the loading amount of DOX on NPs accounted for 414.4 mg/g for MNP–DGL–RGD-GX1–DOX. The results of cytotoxicity, flow cytometry, and cellular uptake consistently indicated that the MNP–DGL–RGD-GX1–DOX NPs were inclined to target HepG2 cells in selected three kinds of cells. In vitro exploration of molecular mechanism revealed that cell apoptosis was associated with the overexpression of Fas protein and the significant activation of caspase-3. In vivo magnetic resonance imaging and biodistribution study showed that the MNP–DGL–RGD-GX1–DOX formulation had high affinity to the tumor tissue, leading to more aggregation of NPs in the tumor. In vivo antitumor efficacy research verified that MNP–DGL–RGD-GX1–DOX NPs possessed significant antitumor activity and the tumor inhibitory rate reached 78.5%. These results suggested that NPs could be promising in application to early diagnosis and therapy in hepatocellular carcinoma as a specific nanoprobe. Dove Medical Press 2017-02-10 /pmc/articles/PMC5315215/ /pubmed/28243083 http://dx.doi.org/10.2147/IJN.S126887 Text en © 2017 Shen et al. This work is published and licensed by Dove Medical Press Limited The full terms of this license are available at https://www.dovepress.com/terms.php and incorporate the Creative Commons Attribution – Non Commercial (unported, v3.0) License (http://creativecommons.org/licenses/by-nc/3.0/). By accessing the work you hereby accept the Terms. Non-commercial uses of the work are permitted without any further permission from Dove Medical Press Limited, provided the work is properly attributed. |
spellingShingle | Original Research Shen, Jian-Min Li, Xin-Xin Fan, Lin-Lan Zhou, Xing Han, Ji-Min Jia, Ming-Kang Wu, Liang-Fan Zhang, Xiao-Xue Chen, Jing Heterogeneous dimer peptide-conjugated polylysine dendrimer-Fe(3)O(4) composite as a novel nanoscale molecular probe for early diagnosis and therapy in hepatocellular carcinoma |
title | Heterogeneous dimer peptide-conjugated polylysine dendrimer-Fe(3)O(4) composite as a novel nanoscale molecular probe for early diagnosis and therapy in hepatocellular carcinoma |
title_full | Heterogeneous dimer peptide-conjugated polylysine dendrimer-Fe(3)O(4) composite as a novel nanoscale molecular probe for early diagnosis and therapy in hepatocellular carcinoma |
title_fullStr | Heterogeneous dimer peptide-conjugated polylysine dendrimer-Fe(3)O(4) composite as a novel nanoscale molecular probe for early diagnosis and therapy in hepatocellular carcinoma |
title_full_unstemmed | Heterogeneous dimer peptide-conjugated polylysine dendrimer-Fe(3)O(4) composite as a novel nanoscale molecular probe for early diagnosis and therapy in hepatocellular carcinoma |
title_short | Heterogeneous dimer peptide-conjugated polylysine dendrimer-Fe(3)O(4) composite as a novel nanoscale molecular probe for early diagnosis and therapy in hepatocellular carcinoma |
title_sort | heterogeneous dimer peptide-conjugated polylysine dendrimer-fe(3)o(4) composite as a novel nanoscale molecular probe for early diagnosis and therapy in hepatocellular carcinoma |
topic | Original Research |
url | https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5315215/ https://www.ncbi.nlm.nih.gov/pubmed/28243083 http://dx.doi.org/10.2147/IJN.S126887 |
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