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Photothermal treatment of glioma; an in vitro study of macrophage-mediated delivery of gold nanoshells

机译:光热治疗神经胶质瘤;巨噬细胞介导的金纳米壳传递的体外研究

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摘要

One of the major factors that limits the treatment effectiveness for gliomas is the presence of the blood–brain barrier (BBB) which protects infiltrating glioma cells from the effects of anti-cancer agents. Circulating monocytes/macrophages (Ma) have a natural ability to traverse the intact and compromised BBB and loaded with anti cancer agents could be used as vectors to target tumors and surrounding tumor infiltrated tissue. Nanoshells (NS) are composed of a dielectric core (silica) coated with an ultrathin gold layer which converts absorbed near-infrared light (NIR) to heat with an extremely high efficacy and stability. We have investigated the effects of exposure to laser NIR on multicell human glioma spheroids infiltrated with empty (containing no nanoshells) or nanoshell loaded macrophages. Our results demonstrated that; (1) macrophages could efficiently take up bare or coated (PEGylated) gold NS: (2) NS loaded macrophages infiltrated into glioma spheroids to the same or, in some cases, to a greater degree than empty Ma; (3) NIR laser irradiation of spheroids incorporating NS loaded macrophages resulted in complete growth inhibition in an irradiance dependent manner, and (4) spheroids infiltrated with empty macrophages had growth curves identical to untreated control cultures. The results of this study provide proof of concept for the use of macrophages as a delivery vector of NS into gliomas for photothermal ablation and open the possibility of developing such regimens for patient treatment.
机译:限制脑胶质瘤治疗效果的主要因素之一是血脑屏障(BBB)的存在,它可以保护浸润的神经胶质瘤细胞免受抗癌药的作用。循环单核细胞/巨噬细胞(Ma)具有穿越完整和受损的BBB的天然能力,并装有抗癌剂,可用作靶向肿瘤和周围肿瘤浸润组织的载体。纳米壳(NS)由涂覆有超薄金层的介电芯(二氧化硅)组成,该极薄金层将吸收的近红外光(NIR)转换为热量,具有极高的功效和稳定性。我们已经研究了暴露于激光近红外光谱对空(不含纳米壳)或纳米壳负载巨噬细胞浸润的多细胞人类神经胶质瘤球体的影响。我们的结果表明: (1)巨噬细胞可以有效地吸收裸露的或包被的(聚乙二醇化的)金NS:(2)载入NS的巨噬细胞浸润到胶质瘤球体中的程度与空Ma相同或更大。 (3)掺有NS的巨噬细胞的球体的NIR激光辐照以辐照度依赖性方式完全抑制了生长,并且(4)用空巨噬细胞浸润的球体的生长曲线与未经处理的对照培养物相同。这项研究的结果提供了使用巨噬细胞作为NS向神经胶质瘤中进行光热消融的载体的概念验证,并为开发此类治疗方案提供了可能性。

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