Magnetic delivery of antitumor carboplatin by using PEGylated-Niosomes

被引:73
作者
Davarpanah, Fereshteh [1 ]
Yazdi, Aliakbar Khalili [2 ]
Barani, Mahmood [1 ]
Mirzaei, Mohammad [3 ]
Torkzadeh-Mahani, Masoud [2 ]
机构
[1] Shahid Bahonar Univ Kerman, Fac Chem, Dept Nanochem, Kerman, Iran
[2] Grad Univ Adv Technol, Inst Sci High Technol & Environm Sci, Dept Biotechnol, Haft Bagh Highway, Kerman 7631133131, Iran
[3] Shahid Bahonar Univ Kerman, Fac Chem, Dept Analyt Chem, Kerman, Iran
关键词
Niosomes; Magnetic particles; PEGylation; Targeted drug delivery; Carboplatin; DRUG-DELIVERY; CANCER-THERAPY; GENE DELIVERY; LIPOSOMES; PEG; SYSTEMS; PHARMACOKINETICS; NANOPARTICLES; COMPLEXES; CARRIERS;
D O I
10.1007/s40199-018-0215-3
中图分类号
R9 [药学];
学科分类号
1007 ;
摘要
To improve the efficiency of niosomal drug delivery, here we employed two tactics. First, niosomes were magnetized using Fe3O4@SiO2 mangnetic nanoparticles, and second, their surface was modified by PEGylation. PEGylation was intended for increasing the bioavailability of niosomes, and magnetization was used for rendering them capable of targeting specific tissues. These PEGylated magnetic niosomes were also loaded with Carboplatin, an antitumor drug. Next, these niosomes were studied in terms of size, morphology, zeta potential, and drug entrapment efficiency. Then, the in vitro drug release from these modified niosomes was compared to that of both naked and nonmagnetized niosomes. Interestingly, although loading of naked-niosomes with magnetic particles lead to an increase in the rate of drug release, PEGylation of these magnetized niosomes caused a more sustained drug release. Thus, PEGylation of magnetic niosomes, besides improving their bioavailability, caused a slower and sustained release of the drug over time. Finally, studying the in vitro effectives of niosomal formulations towards MCF-7, a breast cancer cell line, showed that PEGylated magnetic niosomes had a satisfactory toxicity towards these cells in the presence of an external magnetic field. In conclusion, PEGylated magnetic niosomes showed enhanced qualities regarding the controlled release and delivery of drug.
引用
收藏
页码:57 / 64
页数:8
相关论文
共 39 条
[1]   The state-of-play and future of platinum drugs [J].
Apps, Michael G. ;
Choi, Eugene H. Y. ;
Wheate, Nial J. .
ENDOCRINE-RELATED CANCER, 2015, 22 (04) :R219-R233
[2]   Stem cell-based gene delivery mediated by cationic niosomes for bone regeneration [J].
Attia, Noha ;
Mashal, Mohamed ;
Grijalvo, Santiago ;
Eritja, Ramon ;
Zarate, Jon ;
Puras, Gustavo ;
Luis Pedraz, Jose .
NANOMEDICINE-NANOTECHNOLOGY BIOLOGY AND MEDICINE, 2018, 14 (02) :521-531
[3]   DIFFUSION OF UNIVALENT IONS ACROSS LAMELLAE OF SWOLLEN PHOSPHOLIPIDS [J].
BANGHAM, AD ;
STANDISH, MM ;
WATKINS, JC .
JOURNAL OF MOLECULAR BIOLOGY, 1965, 13 (01) :238-+
[4]   Characterization of Niosomes Prepared With Various Nonionic Surfactants for Paclitaxel Oral Delivery [J].
Bayindir, Zerrin Sezgin ;
Yuksel, Nilufer .
JOURNAL OF PHARMACEUTICAL SCIENCES, 2010, 99 (04) :2049-2060
[5]   SeqTU: A Web Server for Identification of Bacterial Transcription Units [J].
Chen, Xin ;
Chou, Wen-Chi ;
Ma, Qin ;
Xu, Ying .
SCIENTIFIC REPORTS, 2017, 7
[6]   Highly selective detection of microRNA based on distance-dependent electrochemiluminescence resonance energy transfer between CdTe nanocrystals and Au nanoclusters [J].
Cheng, Yan ;
Lei, Jianping ;
Chen, Yunlong ;
Ju, Huangxian .
BIOSENSORS & BIOELECTRONICS, 2014, 51 :431-436
[7]   Therapeutic nanoparticles for drug delivery in cancer [J].
Cho, Kwangjae ;
Wang, Xu ;
Nie, Shuming ;
Chen, Zhuo ;
Shin, Dong M. .
CLINICAL CANCER RESEARCH, 2008, 14 (05) :1310-1316
[8]   Magnetic nanoparticles and targeted drug delivering [J].
Chomoucka, Jana ;
Drbohlavova, Jana ;
Huska, Dalibor ;
Adam, Vojtech ;
Kizek, Rene ;
Hubalek, Jaromir .
PHARMACOLOGICAL RESEARCH, 2010, 62 (02) :144-149
[9]   Gel-embedded niosomes: Preparation, characterization and release studies of a new system for topical drug delivery [J].
Coviello, T. ;
Trotta, A. M. ;
Marianecci, C. ;
Carafa, M. ;
Di Marzio, L. ;
Rinaldi, F. ;
Di Meo, C. ;
Alhaique, F. ;
Matricardi, P. .
COLLOIDS AND SURFACES B-BIOINTERFACES, 2015, 125 :291-299
[10]   Cisplatin in cancer therapy: Molecular mechanisms of action [J].
Dasari, Shaloam ;
Tchounwou, Paul Bernard .
EUROPEAN JOURNAL OF PHARMACOLOGY, 2014, 740 :364-378