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Carbon nanotubes allow capture of krypton barium and lead for multichannel biological X-ray fluorescence imaging

机译:碳纳米管可捕获capture钡和铅以进行多通道生物X射线荧光成像

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摘要

The desire to study biology in situ has been aided by many imaging techniques. Among these, X-ray fluorescence (XRF) mapping permits observation of elemental distributions in a multichannel manner. However, XRF imaging is underused, in part, because of the difficulty in interpreting maps without an underlying cellular ‘blueprint'; this could be supplied using contrast agents. Carbon nanotubes (CNTs) can be filled with a wide range of inorganic materials, and thus can be used as ‘contrast agents' if biologically absent elements are encapsulated. Here we show that sealed single-walled CNTs filled with lead, barium and even krypton can be produced, and externally decorated with peptides to provide affinity for sub-cellular targets. The agents are able to highlight specific organelles in multiplexed XRF mapping, and are, in principle, a general and versatile tool for this, and other modes of biological imaging.
机译:许多成像技术帮助了就地研究生物学的愿望。其中,X射线荧光(XRF)映射允许以多通道方式观察元素分布。然而,XRF成像未得到充分利用,部分原因是在没有基础细胞“蓝图”的情况下难以解释地图。这可以使用造影剂来提供。碳纳米管(CNT)可以填充多种无机材料,因此如果将生物上不存在的元素封装起来,则可以用作“造影剂”。在这里,我们表明可以生产出充满铅,钡,甚至k的密封单壁碳纳米管,并在外部用肽修饰以提供对亚细胞靶标的亲和力。这些试剂能够在多路XRF映射中突出显示特定的细胞器,并且原则上是实现此目的的通用通用工具以及其他生物成像模式。

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