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首页> 外文期刊>Scientific reports. >Direct Evidence of Lack of Colocalisation of Fluorescently Labelled Gold Labels Used in Correlative Light Electron Microscopy
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Direct Evidence of Lack of Colocalisation of Fluorescently Labelled Gold Labels Used in Correlative Light Electron Microscopy

机译:用于相关光电子显微镜的荧光标记的金标记缺乏荧光标记的金标记的直接证据

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Fluorescently labelled nanoparticles are routinely used in Correlative Light Electron Microscopy (CLEM) to combine the capabilities of two separate microscope platforms: fluorescent light microscopy (LM) and electron microscopy (EM). The inherent assumption is that the fluorescent label observed under LM colocalises well with the electron dense nanoparticle observed in EM. Herein we show, by combining single molecule fluorescent imaging with optical detection of the scattering from single gold nanoparticles, that for a commercially produced sample of 10?nm gold nanoparticles tagged to Alexa-633 there is in fact no colocalisation between the fluorescent signatures of Alexa-633 and the scattering associated with the gold nanoparticle. This shows that the attached gold nanoparticle quenches the fluorescent signal by ~95%, or less likely that the complex has dissociated. In either scenario, the observed fluorescent signal in fact arises from a large population of untagged fluorophores; rendering these labels potentially ineffective and misleading to the field.
机译:荧光标记的纳米颗粒通常用于相关的光电子显微镜(CLEM)以结合两个单独的显微镜平台的能力:荧光显微镜(LM)和电子显微镜(EM)。固有假设是在LM上观察到的荧光标记良好,在EM中观察到的电子致密纳米粒子。在本文中,通过将单个分子荧光成像与来自单金纳米颗粒的散射的光学检测组合,即用于商业生产的10·nm金纳米粒子的样品标记为Alexa-633,实际上alexa的荧光签名之间实际上没有离子化。 -633和与金纳米粒子相关的散射。这表明附着的金纳米粒子将荧光信号猝灭〜95%,或不太可能与复合物解离。在任何一种情况下,观察到的荧光信号实际上都是来自大量未标记的荧光团;渲染这些标签可能无效和误导对该领域。

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