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纳米颗粒负载巨噬细胞介导的光热疗法:治疗胶质瘤的潜力。

Nanoparticle-loaded macrophage-mediated photothermal therapy: potential for glioma treatment.

作者信息

Madsen Steen J, Christie Catherine, Hong Seok Jin, Trinidad Anthony, Peng Qian, Uzal Francisco A, Hirschberg Henry

机构信息

Department of Health Physics and Diagnostic Sciences, University of Nevada, 4505 South Maryland Pkwy, Las Vegas, NV, 89154, USA,

出版信息

Lasers Med Sci. 2015 May;30(4):1357-65. doi: 10.1007/s10103-015-1742-5. Epub 2015 Mar 21.

Abstract

Gold-based nanoparticles have been used in a number of therapeutic and diagnostic applications. The purpose of this study was to investigate the efficacy of gold-silica nanoshells (AuNS) in photothermal therapy (PTT) of rat gliomas. Rat alveolar macrophages (Ma) were used as nanoparticle delivery vectors. Uptake of AuNS (bare and PEGylated) was investigated in Ma. AuNS were incubated with Ma for 24 h. Phase contrast microscopy was used to visualize the distribution of loaded Ma in three-dimensional glioma spheroids. PTT efficacy was evaluated for both empty (Ma) and AuNS-loaded Ma (Ma(NS)) in both monolayers and spheroids consisting of C6 rat glioma cells and Ma. Monolayers/spheroids were irradiated for 5 min with light from an 810-nm diode laser at irradiances ranging from 7 to 28 W cm(-2). Monolayer survival was evaluated using a 3-(4,5-dimethylthiazol-2-yl)-5-(3-carboxymethoxyphenyl)-2-(4-sulfophenyl)-2H-tetrazolium (MTS) assay while PTT efficacy in spheroids was determined from growth kinetics and live/dead fluorescence microscopy. PTT efficacy was investigated in vivo using a Sprague-Dawley rat glioma model. Five rats received direct intracranial injection of a mixture of 10(4) C6 glioma cells and, 2 days later, an equal number of Ma(NS). Three rats received laser treatment (810 nm; 10 min; 1 W) while the remaining two served as controls (no laser treatment). The uptake ratio of bare to PEGylated AuNS by Ma was 4:1. A significant photothermal effect was observed in vitro, albeit at relatively high radiant exposures (2.1-4.2 kJ cm(-2)). PTT proved effective in vivo in preventing or delaying tumor development in the PTT-treated animals.

摘要

金基纳米颗粒已被用于多种治疗和诊断应用中。本研究的目的是探讨金-二氧化硅纳米壳(AuNS)在大鼠胶质瘤光热疗法(PTT)中的疗效。大鼠肺泡巨噬细胞(Ma)被用作纳米颗粒递送载体。研究了Ma对AuNS(裸型和聚乙二醇化型)的摄取情况。将AuNS与Ma孵育24小时。利用相差显微镜观察负载Ma在三维胶质瘤球体中的分布。在由C6大鼠胶质瘤细胞和Ma组成的单层和球体中,评估了空载体(Ma)和负载AuNS的Ma(Ma(NS))的PTT疗效。用810 nm二极管激光器发出的光,在7至28 W cm(-2)的辐照度下,对单层/球体照射5分钟。使用3-(4,5-二甲基噻唑-2-基)-5-(3-羧甲氧基苯基)-2-(4-磺基苯基)-2H-四唑(MTS)法评估单层细胞的存活率,而通过生长动力学和活/死荧光显微镜确定球体中的PTT疗效。使用Sprague-Dawley大鼠胶质瘤模型在体内研究PTT疗效。五只大鼠接受直接颅内注射10(4)个C6胶质瘤细胞的混合物,2天后,注射等量的Ma(NS)。三只大鼠接受激光治疗(810 nm;10分钟;1 W),其余两只作为对照(不进行激光治疗)。Ma对裸型AuNS与聚乙二醇化AuNS的摄取率为4:1。尽管在相对较高的辐射暴露(2.1 - 4.2 kJ cm(-2))下,但在体外观察到了显著的光热效应。PTT在体内被证明对PTT治疗的动物预防或延缓肿瘤发展有效。

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