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Determining Diffusion Coefficients in Inhomogeneous Tissues Using Fluorescence Recovery after Photobleaching

机译:光漂白后的荧光恢复测定不均匀组织中的扩散系数

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摘要

Diffusion plays an important role in the transport of nutrients and signaling molecules in cartilaginous tissues. Diffusion coefficients can be measured by fluorescence recovery after photobleaching (FRAP). Available methods to analyze FRAP data, however, assume homogeneity in the environment of the bleached area and neglect geometrical restrictions to diffusion. Hence, diffusion coefficients in inhomogeneous materials, such as most biological tissues, cannot be assessed accurately. In this study, a new method for analyzing data from FRAP measurements has been developed, which is applicable to inhomogeneous tissues. It is based on a fitting procedure of the intensity recovery after photobleaching with a two-dimensional finite element analysis, which includes Fick's law for diffusion. The finite element analysis can account for distinctive diffusivity in predefined zones, which allows determining diffusion coefficients in inhomogeneous samples. The method is validated theoretically and experimentally in both homogeneous and inhomogeneous tissues and subsequently applied to the proliferation zone of the growth plate. Finally, the importance of accounting for inhomogeneities, for appropriate assessment of diffusivity in inhomogeneous tissues, is illustrated.
机译:扩散在软骨组织中营养物质和信号分子的运输中起着重要作用。扩散系数可通过光漂白后的荧光恢复(FRAP)进行测量。但是,分析FRAP数据的可用方法假定漂白区域环境中的同质性,并且忽略了扩散的几何限制。因此,不能准确地评估非均质材料(例如大多数生物组织)中的扩散系数。在这项研究中,已经开发了一种用于分析FRAP测量数据的新方法,该方法适用于非均质组织。它基于光漂白后强度恢复的拟合程序,并具有二维有限元分析,其中包括菲克扩散定律。有限元分析可以解释预定义区域中的独特扩散率,从而可以确定不均匀样本中的扩散系数。该方法在均质和非均质组织中均经过理论和实验验证,随后应用于生长板的增殖区。最后,说明了考虑不均匀性,适当评估不均匀组织中扩散性的重要性。

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