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Three-dimensional tracking of carbon nanotubes within living cells

机译:活细胞内碳纳米管的三维追踪

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Figure Persented: Three-dimensional tracking of single-walled carbon nanotubes (SWNT) with an orbital tracking microscope is demonstrated. We determine the viscosity regime (above 250 cP) at which the rotational diffusion coefficient can be used for length estimation. We also demonstrate SWNT tracking within live HeLa cells and use these findings to spatially map corral volumes (0.27-1.32 μm ~3), determine an active transport velocity (455 nm/s), and calculate local viscosities (54-179 cP) within the cell. With respect to the future use of SWNTs as sensors in living cells, we conclude that the sensor must change the fluorescence signal by at least 4-13% to allow separation of the sensor signal from fluctuations due to rotation of the SWNT when measuring with a time resolution of 32 ms.
机译:实物图:演示了使用轨道跟踪显微镜对单壁碳纳米管(SWNT)进行的三维跟踪。我们确定了可以将旋转扩散系数用于长度估算的粘度范围(高于250 cP)。我们还演示了在活HeLa细胞中进行SWNT跟踪,并利用这些发现在空间上绘制出珊瑚体积(0.27-1.32μm〜3),确定有效转运速度(455 nm / s)并计算局部粘度(54-179 cP)细胞。关于将来将SWNTs用作活细胞中的传感器,我们得出的结论是,当用sn进行测量时,传感器必须将荧光信号改变至少4-13%,以使传感器信号与SWNT旋转引起的波动区分开。时间分辨率为32毫秒。

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