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Photothermal ablation of malignant brain tumors by nanoparticle loaded macrophages.

机译:纳米颗粒加载的巨噬细胞对恶性脑肿瘤的光热消融。

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Introduction: Nanoshells-are a new class of optically tunable nanoparticles composed of a dielectric core (silica) coated with an ultrathin metallic layer (gold). Since nanoshells are roughly one million times more efficient at converting NIR light into heat than conventional dyes such as indocyanine green , once localized to the tumor and exposed to NIR light, they can generate sufficient heat to induce cell death via thermal ablation. Macrophages are frequently found in and around glioblastomas in both experimental animals and patient biopsies, indicating local synthesis of chemo attractive factors in gliomas and that inflammatory cells loaded with nanoparticles could therefore be used to target tumors.rnMaterials and Methods: Human brain tumor spheroids were co-incubated with fluorescent labeled mitomycin treated murine Ma (P388-D) loaded with increasing numbers of gold nanoshells. The spheroids were exposed to increasing levels of NIR (810 nm) light, corresponding to the absorption peak of the nanoshells. The effect of the radiation treatment was evaluated by live/dead assay examined by two photon microscopy and the kinetics of spheroid growth in a 2 week period.Results: Nanoshell loaded macrophages were capable of invading preformed spheroids following 12hrs of co-incubation. Significant cell death within the spheroids containing nanoshell loaded macrophages was observed following NIR light exposure. Spheroids treated in this manner also showed no tendency to further growth. In contrast spheroids containing macrophages alone (no nanoshell incorporation), exposed to similar levels of NIR light, showed a growth pattern similar to non-treated controls and contained a majority of living tumor cells.rnConclusion: The in vitro results of macrophage-mediated delivery of nanoshells into malignant brain tumor spheroids suggest that photothermal ablation of GBM may be possible. Animal experiments on tumor bearing rats are presently underway to examine this possibility further.
机译:简介:纳米壳-是一类新型的光学可调纳米颗粒,由涂覆有超薄金属层(金)的介电芯(二氧化硅)组成。由于纳米壳将NIR光转换成热的效率比吲哚花青绿等传统染料大约高一百万倍,一旦定位在肿瘤上并暴露于NIR光,它们就可以产生足够的热量以通过热消融诱导细胞死亡。在实验动物和活检患者的胶质母细胞瘤中及其周围经常发现巨噬细胞,这表明神经胶质瘤中有化学吸引因子的局部合成,因此装载有纳米颗粒的炎性细胞可用于靶向肿瘤。 -用荧光标记的丝裂霉素处理的鼠Ma(P388-D)孵育,该鼠中装有数量不断增加的金纳米壳。球体暴露于不断增加的近红外(810 nm)光水平,对应于纳米壳的吸收峰。放射治疗的效果通过两个光子显微镜下的活/死试验以及在2周内球体生长的动力学进行了评估。结果:纳米壳载巨噬细胞能够在共孵育12小时后侵入预先形成的球体。 NIR曝光后,观察到含有纳米壳的巨噬细胞的球状细胞内细胞明显死亡。用这种方式处理的球体也没有显示出进一步生长的趋势。相比之下,仅包含巨噬细胞(不掺入纳米壳)的球状体,暴露于相似水平的近红外光下,显示出与未经治疗的对照组相似的生长模式,并且包含大部分活体肿瘤细胞。rn结论:巨噬细胞介导的递送的体外结果将纳米壳制成恶性脑肿瘤球体表明GBM的光热消融是可能的。目前正在对荷瘤大鼠进行动物实验以进一步检查这种可能性。

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  • 来源
    《Photonic therapeutics and diagnostics VII》|2011年|p.78833U.1-78833U.10|共10页
  • 会议地点 San Francisco CA(US)
  • 作者单位

    Beckman. Laser Institute, University of California/Irvine, Irvine, CA Dept. of Health Physics University of Nevada, Las Vegas, Las Vegas, NV;

    Beckman. Laser Institute, University of California/Irvine, Irvine, CA Dept. of Otolaryngology-Head and Neck Surgery, Korea University College of Medicine;

    Department of Pharmaceutical Sciences and Department of Chemical Engineering and Materials Science, University of California/Irvine, Irvine, CA;

    Beckman. Laser Institute, University of California/Irvine, Irvine, CA;

    Beckman. Laser Institute, University of California/Irvine, Irvine, CA Dept. of Health Physics University of Nevada, Las Vegas, Las Vegas, NV;

  • 会议组织
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 医用物理学;
  • 关键词

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