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A Correlative Optical Microscopy and Scanning Electron Microscopy Approach to Locating Nanoparticles in Brain Tumors

机译:相关光学显微镜和扫描电子显微镜方法定位脑肿瘤中的纳米粒子

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摘要

The growing use of nanoparticles in biomedical applications, including cancer diagnosis and treatment, demands the capability to exactly locate them within complex biological systems. In this work a correlative optical and scanning electron microscopy technique was developed to locate and observe multi-modal gold core nanoparticle accumulation in brain tumor models. Entire brain sections from mice containing orthotopic brain tumors injected intravenously with nanoparticles were imaged using both optical microscopy to identify the brain tumor, and scanning electron microscopy to identify the individual nanoparticles. Gold-based nanoparticles were readily identified in the scanning electron microscope using backscattered electron imaging as bright spots against a darker background. This information was then correlated to determine the exact location of the nanoparticles within the brain tissue. The nanoparticles were located only in areas that contained tumor cells, and not in the surrounding healthy brain tissue. This correlative technique provides a powerful method to relate the macro- and micro-scale features visible in light microscopy with the nanoscale features resolvable in scanning electron microscopy.
机译:纳米粒子在包括癌症诊断和治疗在内的生物医学应用中的日益增长的需求要求能够将其精确定位在复杂的生物系统中。在这项工作中,开发了相关的光学和扫描电子显微镜技术,以定位和观察脑肿瘤模型中的多峰金核纳米颗粒积聚。使用光学显微镜对脑肿瘤进行成像,并通过扫描电子显微镜对单个纳米颗粒进行鉴定,对包含原位脑瘤静脉注射纳米颗粒的小鼠的整个脑切片进行成像。使用反向散射电子成像在扫描电子显微镜中很容易将金基纳米颗粒识别为深色背景上的亮点。然后将该信息关联起来,以确定纳米颗粒在脑组织内的确切位置。纳米颗粒仅位于含有肿瘤细胞的区域,而不位于周围健康的大脑组织中。这种相关技术提供了一种强大的方法,可以将光学显微镜中可见的宏观和微观尺度特征与扫描电子显微镜中可分辨的纳米尺度特征联系起来。

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