Biocompatible APTES–PEG Modified Magnetite Nanoparticles: Effective Carriers of Antineoplastic Agents to Ovarian Cancer

被引:0
作者
Amaneh Javid
Shahin Ahmadian
Ali Akbar Saboury
Seyed Mehdi Kalantar
Saeed Rezaei-Zarchi
Sughra Shahzad
机构
[1] University of Tehran,Institute of Biochemistry and Biophysics
[2] University of Tehran,Center of Excellence of Nano
[3] Shahid Sadoughi University Medical Sciences,Biomedicine, Nano
[4] Payame Noor University,Science and Nano
[5] Social Security Hospital,Technology Research Center
来源
Applied Biochemistry and Biotechnology | 2014年 / 173卷
关键词
Salination; Ovarian cancer; Tumor volume; Cytotoxicity; Encapsulation efficiency; PEGylation;
D O I
暂无
中图分类号
学科分类号
摘要
Magnetite nanoparticles are particularly attractive for drug delivery applications because of their size-dependent superparamagnetism, low toxicity, and biocompatibility with cells and tissues. Surface modification of iron oxide nanoparticles with biocompatible polymers is potentially beneficial to prepare biodegradable nanocomposite-based drug delivery agents for in vivo and in vitro applications. In the present study, the bare (10 nm) and polyethylene glycol (PEG)–(3-aminopropyl)triethoxysilane (APTES) (PA) modified (17 nm) superparamagnetic iron oxide nanoparticles (SPIO NPs) were synthesized by coprecipitation method. The anticancer drugs, doxorubicin (DOX) and paclitaxel (PTX), were separately encapsulated into the synthesized polymeric nanocomposites for localized targeting of human ovarian cancer in vitro. Surface morphology analysis by scanning electron microscopy showed a slight increase in particle size (27 ± 0.7 and 30 ± 0.45 nm) with drug loading capacities of 70 and 61.5 % and release capabilities of 90 and 93 % for the DOX- and PTX-AP-SPIO NPs, respectively (p < 0.001). Ten milligrams/milliliter DOX- and PTX-loaded AP-SPIO NPs caused a significant amount of cytotoxicity and downregulation of antiapoptotic proteins, as compared with same amounts of free drugs (p < 0.001). In vivo antiproliferative effect of present formulation on immunodeficient female Balb/c mice showed ovarian tumor shrinkage from 2,920 to 143 mm3 after 40 days. The present formulation of APTES–PEG-SPIO-based nanocomposite system of targeted drug delivery proved to be effective enough in order to treat deadly solid tumor of ovarian cancer in vitro and in vivo.
引用
收藏
页码:36 / 54
页数:18
相关论文
共 142 条
  • [1] Jeun M(2012)Physical limits of pure superparamagnetic Fe Applied Physics Letters 100 092406-9
  • [2] Lee S(2012)O Journal of Nanobiotechnology 10 3-85
  • [3] Kang JK(2001) nanoparticles for a local hyperthermia agent in nanomedicine Electroanalytical Chemistry 510 78-1265
  • [4] Tomitaka A(2008)Synthesis and characterization of core-shell Fe Advanced Drug Delivery Reviews 60 1252-496
  • [5] Kang KW(2005)O Journal of Magnetism and Magnetic Materials 293 483-1555
  • [6] Salehizadeh H(2006)-gold-chitosan nanostructure Advanced Drug Delivery Reviews 58 1532-603
  • [7] Hekmatian H(2011)Nanoparticles: from theory to applications Nanomedicine: Nanotechnology, Biology, and Medicine 7 595-128
  • [8] Sadeghi M(2011)Magnetic nanoparticles in MR imaging and drug delivery International Journal of Pharmaceutical Science Review and Research 8 124-1520
  • [9] Kennedy K(2010)Superparamagnetic nanoparticles for biomedical applications: Possibilities and limitations of a new drug delivery system ACS Applied Material Interfaces 2 1514-12761
  • [10] Cai H(2011)Multifunctional nanocarriers African Journal of Biotechnology 10 12754-1277