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Direct visualization and quantitative analysis of water diffusion in complex biological tissues using CARS microscopy

机译:使用CARS显微镜直接可视化并定量分析复杂生物组织中水的扩散

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To date, it has not been possible to measure microscopic diffusive water movements in epithelia and in the interstitial space of complex tissues and organs. Diffusive water movements are essential for life because they convey physiologically important small molecules, e.g. nutrients and signaling ligands throughout the extracellular space of complex tissues. Here we report the development of a novel method for the direct observation and quantitative analysis of water diffusion dynamics in a biologically organized tissue using Coherent Anti-Stokes Raman Scattering (CARS) microscopy. Using a computer simulation model to analyze the CARS O-H bond vibration data during H2O/D2O exchange in a 3D epithelial cyst, we succeeded in measuring the diffusive water permeability of the individual luminal and basolateral water pathways and also their response to hormonal stimulation. Our technique will be applicable to the measurement of diffusive water movements in other structurally complex and medically important tissues and organs.
机译:迄今为止,尚不可能测量上皮细胞以及复杂组织和器官的间隙中的微观扩散水运动。扩散的水运动是生命必不可少的,因为它们会传递生理上重要的小分子,例如小分子。整个复杂组织的细胞外空间的营养和信号配体。在这里,我们报告了一种新的方法的发展,该方法用于直接观察和定量分析使用相干反斯托克斯拉曼散射(CARS)显微镜在生物组织组织中的水扩散动力学。使用计算机仿真模型分析3D上皮囊肿中H 2 O / D 2 O交换过程中CARS OH键的振动数据,我们成功地测量了扩散水渗透率腔和基底外侧水通路的变化,以及它们对激素刺激的反应。我们的技术将适用于测量其他结构复杂和医​​学上重要的组织和器官中扩散水运动。

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