Sorafenib delivery nanoplatform based on superparamagnetic iron oxide nanoparticles magnetically targets hepatocellular carcinoma

被引:0
作者
Nicoletta Depalo
Rosa Maria Iacobazzi
Gianpiero Valente
Ilaria Arduino
Silvia Villa
Fabio Canepa
Valentino Laquintana
Elisabetta Fanizza
Marinella Striccoli
Annalisa Cutrignelli
Angela Lopedota
Letizia Porcelli
Amalia Azzariti
Massimo Franco
Maria Lucia Curri
Nunzio Denora
机构
[1] Istituto per i Processi Chimico-Fisici-CNR UOS Bari,Dipartimento di Chimica
[2] Istituto Tumori IRCCS Giovanni Paolo II,Dipartimento di Farmacia
[3] Università degli Studi di Bari Aldo Moro,Scienze del Farmaco
[4] Università degli Studi di Bari Aldo Moro,Dipartimento di Chimica e Chimica Industriale
[5] Università di Genova,undefined
来源
Nano Research | 2017年 / 10卷
关键词
superparamagnetic iron oxide nanoparticles; PEG-modified phospholipid micelles; drug delivery; magnetic targeting; hepatocellular carcinoma; sorafenib;
D O I
暂无
中图分类号
学科分类号
摘要
Currently, sorafenib is the only systemic therapy capable of increasing overall survival of hepatocellular carcinoma patients. Unfortunately, its side effects, particularly its overall toxicity, limit the therapeutic response that can be achieved. Superparamagnetic iron oxide nanoparticles (SPIONs) are very attractive for drug delivery because they can be targeted to specific sites in the body through application of a magnetic field, thus improving intratumoral accumulation and reducing adverse effects. Here, nanoformulations based on polyethylene glycol modified phospholipid micelles, loaded with both SPIONs and sorafenib, were successfully prepared and thoroughly investigated by complementary techniques. This nanovector system provided effective drug delivery, had an average hydrodynamic diameter of about 125 nm, had good stability in aqueous medium, and allowed controlled drug loading. Magnetic analysis allowed accurate determination of the amount of SPIONs embedded in each micelle. An in vitro system was designed to test whether the SPION micelles can be efficiently held using a magnetic field under typical flow conditions found in the human liver. Human hepatocellular carcinoma (HepG2) cells were selected as an in vitro system to evaluate tumor cell targeting efficacy of the superparamagnetic micelles loaded with sorafenib. These experiments demonstrated that this delivery platform is able to enhance sorafenib’s antitumor effectiveness by magnetic targeting. The magnetic nanovectors described here represent promising candidates for targeting specific hepatic tumor sites, where selective release of sorafenib can improve its efficacy and safety profile.
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页码:2431 / 2448
页数:17
相关论文
共 245 条
[1]  
Villanueva A.(2011)Targeted therapies for hepatocellular carcinoma Gastroenterology 140 1410-1426
[2]  
Llovet J. M.(2001)Single-dose toxicity study of hepatic intra-arterial infusion of doxorubicin coupled to a novel magnetically targeted drug carrier Toxicol. Sci. 60 177-183
[3]  
Goodwin S. C.(2015)Chemotherapy and target therapy for hepatocellular carcinoma: New advances and challenges World J. Hepatol. 7 787-798
[4]  
Bittner C. A.(2008)Diagnosis and treatment of hepatocellular carcinoma Gastroenterology 134 1752-1763
[5]  
Peterson C. L.(2012)Sorafenib effectiveness is inhibited in presence of laminin-5 in HCC cells J. Hepatol. 56 S114-69
[6]  
Wong G.(2010)Multifunctional magnetic nanoparticles for targeted delivery Nanomedicine 6 64-662
[7]  
Deng G. L.(2016)Integrin-targeting with peptide-bioconjugated semiconductor-magnetic nanocrystalline heterostructures Nano Res. 9 644-3361
[8]  
Zeng S.(2016)Highly selective luminescent nanostructures for mitochondrial imaging and targeting Nanoscale 8 3350-871
[9]  
Shen H.(2014)Translocator protein ligand-PLGA conjugated nanoparticles for 5-fluorouracil delivery to glioma cancer cells Mol. Pharm. 11 859-231
[10]  
El-Serag H. B.(2012)Novel codrugs with GABAergic activity for dopamine delivery in the brain Int. J. Pharm. 437 221-16