The Institute of Pharmaceutical Sciences (TIPS), Tehran University of Medical Sciences, Tehran 1417614411, Iran; Department of Chemistry, Faculty of Science, University of Zanjan, Zanjan, Iran.
Department of Medical Physics, School of Medicine, Tabriz University of Medical Science, Tabriz, Iran.
J Colloid Interface Sci. 2019 Nov 15;556:128-139. doi: 10.1016/j.jcis.2019.08.046. Epub 2019 Aug 13.
Magnetic drug delivery system is one of the most important strategies for cancer diagnosis and treatment. In this study, a novel theranostic system was fabricated based on cyclodextrin nanosponge (CDNS) polymer anchored on the surface of Magnetite nanoparticles (FeO/CDNS NPs) which was then decorated with folic acid (FA) as a targeting agent (FeO/CDNS-FA). Curcumin (CUR), a hydrophobic model drug, was next loaded into the cyclodextrin cavity and polymeric matrix of CDNS (FeO/CDNS-FA@CUR). The system was fully characterized. The in vitro release study revealed pH-sensitive behavior. Cytotoxicity assays indicated a negligible toxicity for CUR free FeO/CDNS-FA NPs against both of M109 cancerous cells and MCF 10A normal cells. CUR-loaded FeO/CDNS-FA NPs exhibited higher toxicity against M109 cancerous cells than MCF 10A normal cells (p < 0.05). FeO/CDNS-FA@CUR NPs resulted in much more cell viability on normal cells than pure CUR (p < 0.05). Moreover, blood compatibility study showed minor hemolytic activity. In vitro MRI studies illustrated negative signal increase in cells affirming acceptable diagnostic ability of the nanocarrier. The T MR signal intensity for FeO/CDNS-FA@CUR NPs in M109 cells was around 2-fold higher than that of MCF 10A cells. This implies two times higher selective cellular uptake of the FeO/CDNS-FA@CUR NPs into M109 cell compared to MCF 10A. The multifunctional nanocarrier could be considered as promising candidate for cancer theranostics because of the smart drug release, selective cytotoxicity, suitable hemocompatibility, and proper T MRI contrast efficiency.
磁性药物递送系统是癌症诊断和治疗的最重要策略之一。在这项研究中,基于磁性纳米粒子(FeO/CDNS NPs)表面锚定的环糊精纳米海绵(CDNS)聚合物构建了一种新型的治疗诊断系统,然后用叶酸(FA)作为靶向剂(FeO/CDNS-FA)进行修饰。姜黄素(CUR)是一种疏水性模型药物,接下来被装载到 CDNS 的环糊精空腔和聚合物基质中(FeO/CDNS-FA@CUR)。该系统进行了全面的表征。体外释放研究表明具有 pH 敏感性。细胞毒性实验表明,游离 CUR 的 FeO/CDNS-FA NPs 对 M109 癌细胞和 MCF 10A 正常细胞均具有可忽略的毒性。载 CUR 的 FeO/CDNS-FA NPs 对 M109 癌细胞的毒性高于 MCF 10A 正常细胞(p<0.05)。FeO/CDNS-FA@CUR NPs 对正常细胞的细胞活力的影响明显低于纯 CUR(p<0.05)。此外,血液相容性研究显示出轻微的溶血活性。体外 MRI 研究表明,细胞中的负信号增加,证实了纳米载体具有可接受的诊断能力。在 M109 细胞中,FeO/CDNS-FA@CUR NPs 的 T2 MR 信号强度比 MCF 10A 细胞高约 2 倍。这意味着 FeO/CDNS-FA@CUR NPs 对 M109 细胞的选择性细胞摄取是 MCF 10A 细胞的 2 倍。由于智能药物释放、选择性细胞毒性、适当的血液相容性和适当的 T2 MRI 对比效率,这种多功能纳米载体可以被认为是癌症治疗诊断的有前途的候选物。
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