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首页> 外文期刊>Journal of Molecular Liquids >Co1-xZnxFe2O4 based nanocarriers for dual-targeted anticancer drug delivery: Synthesis, characterization and in vivo and in vitro biocompatibility study
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Co1-xZnxFe2O4 based nanocarriers for dual-targeted anticancer drug delivery: Synthesis, characterization and in vivo and in vitro biocompatibility study

机译:基于CO1-XZNXFE2O4的纳米载体用于双靶向抗癌药物递送:合成,表征和体内和体外生物相容性研究

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The present paper aimed to synthesize, using thermal-treatment method, a variety of Co1-XZnxFe2O4-based nanocarriers (NCs) as Dual-controlled and targeted drug delivery systems (DDS) and provide a new structure as NCs suitable for the loading and pH-responsive characteristics of the chemotherapeutic curcumin (CUR). To study the structure, surface morphology, surface charge and magnetic properties of NCs, X-ray diffraction (XRD), Fourier transform infrared spectroscopy (FTIR), transmission electron microscopy (TEM), Zetasizer and vibrating sample magnetometer (VSM) were applied here. TEM images of Co0.2Zn0.8Fe2O4 (Co-0.2) showed that NCs had a uniform spherical mesoporous morphology with an average grain size of about similar to 17 nm. Also, it was found that Drug loading was very high, about 22.70 and 21.99 for Co0.6Zn0.4Fe2O4 (Co-0.6) and Co0.4Zn0.6Fe2O4 (Co-0.4), respectively. As indicated, NCs had highly pH-dependent drug release behavior, although different and unique in every one of them, which could be related to zeta potential of Co-0.6. In fact, the neutral zeta potential of Co-0.6 became positive when the pH of releasing media changed from 7.4 to 5.5. Consequently, the hydrogen bond between the Co-0.6 and CUR brake. Therefore, as expected, drug releasing varied from Co-0.6 to about 54% at pH 5.5, rather 29% at pH 7.4. To determine the cytotoxicity of NCs, hemolysis assay, MTT assay and acute toxicity test were used. The tests showed that NCs had the least in vitro and in vivo cytotoxicity and NCs, as a result, could be regarded to be nontoxic. MTT results demonstrated that drug loaded NCs had the same cell viability as bare drugs. Then, it can be concluded that these NCs have the potential required to act as drug delivery systems for anti-cancer drugs delivery such as CUR. (C) 2018 Published by Elsevier B.V.
机译:本文旨在用热处理方法合成,使用热处理方法,各种基于CO1-XZNXFE2O4的纳米载体(NCS)作为双控和靶向药物递送系统(DDS),并提供一种适合于负载和pH的NCS的新结构 - 化学治疗姜黄素(Cur)的象征性特征。为了研究NCS的结构,表面形貌,表面电荷和磁性,X射线衍射(XRD),傅里叶变换红外光谱(FTIR),透射电子显微镜(TEM),透射电子显微镜(TEM),Zetasizer和振动样品磁力计(VSM) 。 COO.2ZN0.8FE2O4(CO-0.2)的TEM图像表明,NCS具有均匀的球形介孔形态,平均晶粒尺寸约为约17nm。此外,发现药物负载非常高,约22.70和21.99〜21.99,分别用于COO.6ZN0.4FE2O4(CO-0.6)和COO 2 O 4(CO-0.4)。如所示,NCS具有高度依赖性药物释放行为,尽管它们中的每一个不同和独特,这可能与CO-0.6的Zeta电位有关。实际上,当释放介质的pH从7.4变为5.5时,CO-0.6的中性Zeta电位变为阳性。因此,Co-0.6和Cur制动器之间的氢键。因此,如预期的那样,药物释放在pH 5.5的pH 5.5时在pH 5.5中的CO-0.6至约54%变化。为了确定NCS的细胞毒性,使用溶血测定,MTT测定和急性毒性试验。该试验表明,结果表明,NCS在体外和体内细胞毒性和NCS的情况下,可以被视为无毒。 MTT结果表明,药物负载的NCS具有与裸药相同的细胞活力。然后,可以得出结论,这些NCS具有作为用于抗癌药物递送的药物递送系统所需的潜力,例如Cur。 (c)2018由elestvier b.v出版。

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