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多尺度传输和 4D 延时成像在精密切割肝切片(PCLS)中的应用。

Multiscale transport and 4D time-lapse imaging in precision-cut liver slices (PCLS).

机构信息

Department of Biology, University of Saskatchewan, Saskatoon, Saskatchewan, Canada.

出版信息

PeerJ. 2024 Feb 26;12:e16994. doi: 10.7717/peerj.16994. eCollection 2024.

Abstract

BACKGROUND

Monitoring cellular processes across different levels of complexity, from the cellular to the tissue scale, is important for understanding tissue structure and function. However, it is challenging to monitor and estimate these structural and dynamic interactions within three-dimensional (3D) tissue models.

OBJECTIVE

The aim of this study was to design a method for imaging, tracking, and quantifying 3D changes in cell morphology (shape and size) within liver tissue, specifically a precision-cut liver slice (PCLS). A PCLS is a 3D model of the liver that allows the study of the structure and function of liver cells in their native microenvironment.

METHODS

Here, we present a method for imaging liver tissue during anisosmotic exposure in a multispectral four-dimensional manner. Three metrics of tissue morphology were measured to quantify the effects of osmotic stress on liver tissue. We estimated the changes in the volume of whole precision cut liver slices, quantified the changes in nuclei position, and calculated the changes in volumetric responses of tissue-embedded cells.

RESULTS

During equilibration with cell-membrane-permeating and non-permeating solutes, the whole tissue experiences shrinkage and expansion. As nuclei showed a change in position and directional displacement under osmotic stress, we demonstrate that nuclei could be used as a probe to measure local osmotic and mechanical stress. Moreover, we demonstrate that cells change their volume within tissue slices as a result of osmotic perturbation and that this change in volume is dependent on the position of the cell within the tissue and the duration of the exposure.

CONCLUSION

The results of this study have implications for a better understanding of multiscale transport, mechanobiology, and triggered biological responses within complex biological structures.

摘要

背景

从细胞到组织尺度,监测不同复杂程度的细胞过程对于理解组织结构和功能非常重要。然而,在三维(3D)组织模型中监测和估计这些结构和动态相互作用具有挑战性。

目的

本研究旨在设计一种方法,用于成像、跟踪和量化肝组织内细胞形态(形状和大小)的 3D 变化,特别是精密切割肝切片(PCLS)。PCLS 是肝的 3D 模型,允许在其天然微环境中研究肝细胞的结构和功能。

方法

在这里,我们提出了一种在多光谱四维方式下对非等渗暴露过程中的肝组织进行成像的方法。测量了三个组织形态学度量标准,以量化渗透压应激对肝组织的影响。我们估计了整个精密切割肝切片体积的变化,量化了核位置的变化,并计算了组织嵌入细胞的体积反应变化。

结果

在与细胞膜可渗透和不可渗透溶质平衡期间,整个组织经历收缩和扩张。由于核在渗透压应激下显示位置和方向位移的变化,我们证明核可以用作测量局部渗透压和机械应激的探针。此外,我们证明细胞由于渗透压扰动而改变其在组织切片中的体积,并且这种体积变化取决于细胞在组织中的位置和暴露的持续时间。

结论

本研究的结果对于更好地理解复杂生物结构内的多尺度运输、机械生物学和触发的生物学反应具有重要意义。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/6ff2/10903333/0ead2f64f2a2/peerj-12-16994-g001.jpg

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