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Temporal ratiometry to assess dynamic concentration distributions of fluorescent molecules in single live cells during continuous diffusional dosing

机译:时间比例法评估连续扩散给药过程中单个活细胞中荧光分子的动态浓度分布

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The introduction of specific molecules into live cells is a widely used approach to probe cellular mechanisms. Recently, we have reported on the sustained dosing of molecules into single cells via a microscopic diffusion port. Here we describe temporal ratiometry, a method to reconstruct intracellular concentration distribution of the delivered molecules as it varies in time during dosing. To characterize this method, we analyzed fluorescence intensity maps obtained during delivery of Lucifer Yellow CH, LY, a polar fluorophore into A7r5 vascular smooth muscle cells, normal rat kidney epithelial cells (NRKE), and MCF-7 human breast cancer cells. Temporal ratiometry indicates a linear increase in concentration of LY in these cells with a nearly uniform distribution during 20 min of delivery. The method cancels the effects of varying cell height and variable accessible volume on the measured intensities at different locations within the cell. Temporal ratiometry will be useful to estimate dynamic changes in intracellular concentration distributions and thus, facilitate the understanding of transport, binding, sequestration, and efflux of molecules introduced into cells.
机译:将特定分子引入活细胞是探测细胞机制的一种广泛使用的方法。最近,我们报道了通过微观扩散端口将分子持续注入单个细胞的情况。在这里,我们描述了时间比例法,这是一种在给药过程中随时间变化而重构所传递分子的细胞内浓度分布的方法。为了表征该方法,我们分析了将荧光素黄CH,LY,一种极性荧光团递送到A7r5血管平滑肌细胞,正常大鼠肾上皮细胞(NRKE)和MCF-7人乳腺癌细胞中获得的荧光强度图。时间比例法表明这些细胞中LY浓度呈线性增加,在分娩20分钟内几乎均匀分布。该方法消除了变化的细胞高度和可变的可及体积对细胞内不同位置处测量强度的影响。时间比例法将有助于估计细胞内浓度分布的动态变化,从而有助于理解引入细胞的分子的转运,结合,螯合和流出。

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