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Magneto low-density nanoemulsion (MLDE): A potential vehicle for combined hyperthermia and photodynamic therapy to treat cancer selectively

机译:磁低密度纳米乳剂(MLDE):热疗和光动力疗法联合治疗选择性治疗癌症的潜在载体

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摘要

In this paper, we introduce a new drug delivery system (DDS) called magneto low-density nanoemulsion (MLDE), which can carry maghemite nanoparticles and Chlorin e6 as an active photosensitizer drug. This design can enhance tumor damage after minor heat dissipation and/or minimum visible light photosensitization doses by classical magnetic hyperthermia (MHT) and photodynamic therapy (PDT), respectively. We establish protocols to prepare the MLDE and to load the drug combination onto it. The MLDE prepared herein is nanometric (<200 nm), has high encapsulation efficiency, and is stable for at least 12 months in water dispersions. Flow cytometry results demonstrated that MLDE presents targeted selectivity toward the MCF-7 breast cancer cell line but not in NHI-3T3 mouse fibroblast cell lines, because the MCF-7 cancer cell surface contains overexpressed low density lipoprotein (LDL) receptors. Despite this targeted effect, MHT or PDT alone does not prompt significant antiproliferative outcomes. On the other hand, MHT and PDT in combination induce a strong and synergic action on MCF-7 cells and reduce the cell viability. In conclusion, the developed MLDE deserves further investigation because it is biocompatible, displays good encapsulation efficiency, and is highly stable. Moreover, it is selectively taken up by cancer cell surfaces with receptor recognition based on LDL receptor overexpression, which potentiates the action of combined MHT and PDT.
机译:在本文中,我们介绍了一种称为磁低密度纳米乳剂(MLDE)的新药物输送系统(DDS),该系统可以携带磁赤铁矿纳米颗粒和Chlorin e6作为活性光敏剂。这种设计可以分别通过经典的磁热疗(MHT)和光动力疗法(PDT)增强轻微散热和/或最小可见光光敏剂量后的肿瘤损伤。我们建立协议以准备MLDE并将药物组合加载到其上。本文制得的MLDE是纳米级(<200 nm),具有高封装效率,并且在水分散体中稳定至少12个月。流式细胞仪结果表明,MLDE对MCF-7乳腺癌细胞系具有针对性的选择性,但在NHI-3T3小鼠成纤维细胞系中却不具有针对性,因为MCF-7癌细胞表面含有过表达的低密度脂蛋白(LDL)受体。尽管有这种靶向作用,但单独的MHT或PDT并不能促进明显的抗增殖结果。另一方面,MHT和PDT组合可诱导对MCF-7细胞的强大协同作用,并降低细胞活力。总之,开发的MLDE具有生物相容性,显示出良好的封装效率并且非常稳定,因此值得进一步研究。此外,它被具有基于LDL受体过表达的受体识别的癌细胞表面选择性吸收,从而增强了MHT和PDT的结合作用。

著录项

  • 来源
    《Materials science & engineering》 |2018年第11期|103-111|共9页
  • 作者单位

    Laboratory of Hibrid Materials, Universidade Federal de São Paulo - UNIFESP, Departamento de Ciências Exatas e da Terra,Department of Chemistry, Center of Nanotechnologyand Tissue Engineering -Photobiology and Photomedicine Research Group, Faculty of Philosophy, Sciences and Letters of Ribeirão Preto, University of São Paulo;

    Department of Chemistry, Center of Nanotechnologyand Tissue Engineering -Photobiology and Photomedicine Research Group, Faculty of Philosophy, Sciences and Letters of Ribeirão Preto, University of São Paulo;

    Laboratory of Optical Spectroscopy, Institute of Physics, Universidade de Brasilia;

    Department of Chemistry, Center of Nanotechnologyand Tissue Engineering -Photobiology and Photomedicine Research Group, Faculty of Philosophy, Sciences and Letters of Ribeirão Preto, University of São Paulo;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Magnetic hyperthermia; Combined therapy; Synergic treatment; Targeting;

    机译:磁疗;联合治疗;协同治疗;靶向治疗;

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