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Glue-Free Stacked Luminescent Nanosheets Enable High-Resolution Ratiometric Temperature Mapping in Living Small Animals

机译:无胶堆叠发光纳米片可在活体小动物中实现高分辨率比率温度映射

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In this paper, a microthermograph, temperature mapping with high spatial resolution, was established using luminescent molecules embedded ultrathin polymeric films (nanosheets), and demonstrated in a living small animal to map out and visualize temperature shift due to animal's muscular activity. Herein, we report super flexible and self-adhesive (no need of glue) nanothermosensor consisting of stacked two different polymeric nanosheets with thermosensitive (Eu-tris (dinaphthoylmethane)-bis-trioctylphosphine oxide: EuDT) and insensitive (Rhodamine 800) dyes being embedded. Such stacked nanosheets allow for the ratiometric thermometry, with which the undesired luminescence intensity shift due to focal drift or animal's z-axis displacement is eliminated and the desired intensity shift solely due to the temperature shift of the sample (living muscle) can be acquired. With the stacked luminescent nanosheets, we achieved the first-ever demonstration of video filming of chronologically changing temperature-shift distribution from the rest state to the active state of the muscles in the living animal. The polymer nanosheet engineering and in vivo microthermography presented in the paper are promising technologies to microscopically explore the heat production and heat transfer in living cells, tissues, and organisms with high spatial resolution beyond what existing thermometric technologies such as infrared thermography have ever achieved.
机译:在本文中,使用嵌入了超薄聚合物膜(纳米片)的发光分子建立了具有高空间分辨率的温度测绘仪的微型热成像仪,并在活体小型动物中进行了演示,以绘制并可视化由于动物的肌肉活动而引起的温度变化。在这里,我们报告了超级柔性和自粘式(无需胶水)纳米热敏传感器,该传感器由两个不同的聚合物纳米片堆叠而成,其中嵌入了热敏性(Eu-tris(二萘甲甲烷)-双三辛基膦氧化物:EuDT)和不敏感的(罗丹明800)染料。这种堆叠的纳米片允许进行比例式测温,利用该测温,可以消除由于焦距漂移或动物的z轴位移而导致的不希望的发光强度位移,并且可以仅由于样品(生命肌肉)的温度位移而获得所需的强度位移。借助堆叠的发光纳米片,我们实现了有史以来的视频拍摄历史上第一个演示,该视频记录了活体动物肌肉从静止状态到活动状态的时间顺序变化的温度变化分布。本文介绍的聚合物纳米片工程技术和体内显微热成像技术是有前景的技术,可以以微观方式探索活细胞,组织和生物体内的热产生和热传递,具有比现有红外测温技术等现有的测温技术更高的空间分辨率。

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