Tumor targeting by lentiviral vectors combined with magnetic nanoparticles in mice

被引:34
|
作者
Borroni, Ester [1 ]
Miola, Marta [2 ]
Ferraris, Sara [2 ]
Ricci, Giulia [3 ]
Rozman, Kristina Zuzek [4 ]
Kostevsek, Nina [4 ]
Catizone, Angela [5 ]
Rimondini, Lia [1 ,6 ]
Prat, Maria [1 ,6 ]
Verne, Enrica [2 ]
Follenzi, Antonia [1 ,6 ]
机构
[1] Univ Piemonte Orientate A Avogadro, Dept Hlth Sci, I-28100 Novara, Italy
[2] Politecn Torino, Dept Appl Sci & Technol, Turin, Italy
[3] Univ Campania Luigi Vanvitelli, Dept Expt Med, Naples, Italy
[4] Jozef Stefan Inst, Dept Nanostruct Mat, Ljubljana, Slovenia
[5] Univ Sapienza, Dept Anat Histol Forens Med & Orthoped, Rome, Italy
[6] Ctr Biotecnol Ric Med Applicata BRMA, Novara, Italy
关键词
Magnetic nanoparticles; Lentiviral vectors; Cancer gene therapy; Solid tumor targeting; IRON-OXIDE NANOPARTICLES; EFFICIENT GENE DELIVERY; IN-VIVO; BIOMEDICAL APPLICATIONS; GOLD NANOPARTICLES; CELLULAR UPTAKE; DRUG-DELIVERY; CANCER; CELLS; EXPRESSION;
D O I
10.1016/j.actbio.2017.07.007
中图分类号
R318 [生物医学工程];
学科分类号
0831 ;
摘要
Nanomaterials conjugated or complexed with biological moieties such as antibodies, polymers or peptides appear to be suitable not only for drug delivery but also for specific cancer treatment. Here, biocompatible iron oxide magnetic nanoparticles (MNPs) with or without a silica shell coupled with lentiviral vectors (LVs) are proposed as a combined therapeutic approach to specifically target gene expression in a cancer mouse model. Initially, four different MNPs were synthesized and their physical properties were characterized to establish and discriminate their behaviors. MNPs and LVs strictly interacted and transduced cells in vitro as well as in vivo, with no toxicity or inflammatory responses. By injecting LV-MNPs complexes intravenously, green fluorescent protein (GFP) resulted in a sustained long-term expression. Furthermore, by applying a magnetic field on the abdomen of intravenous injected mice, GFP positive cells increased in livers and spleens. In liver, LV-MNPs were able to target both hepatocytes and non-parenchymal cells, while in a mouse model with a grafted tumor, intra-tumor LV-MNPs injection and magnetic plaque application next to the tumor demonstrated the efficient uptake of LV-MNPs complexes with high number of transduced cells and iron accumulation in the tumor site. More important, LV-MNPs with the application of the magnetic plaque spread in all the tumor parenchyma and dissemination through the body was prevented confirming the efficient uptake of LV-MNPs complexes in the tumor. Thus, these LV-MNPs complexes could be used as multifunctional and efficient tools to selectively induce transgene expression in solid tumor for therapeutic purposes. Statement of Significance Our study describes a novel approach of combining magnetic properties of nanomaterials with gene therapy. Magnetic nanoparticles (MNPs) coated with or without a silica shell coupled with lentiviral vectors (LVs) were used as vehicle to target biological active molecules in a mouse cancer model. After in situ injection, the presence of MNP under the magnetic field improve the vector distribution in the tumor mass and after systemic administration, the application of the magnetic field favor targeting of specific organs for LV transduction and specifically can direct LV in specific cells (or avoiding them). Thus, our findings suggest that LV-MNPs complexes could be used as multifunctional and efficient tools to selectively induce transgene expression in solid tumor for therapeutic purposes. (C) 2017 Acta Materialia Inc. Published by Elsevier Ltd. All rights reserved.
引用
收藏
页码:303 / 316
页数:14
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