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首页> 外文期刊>American Journal of Physiology >Multidimensional immunolabeling and 4D time-lapse imaging of vital ex vivo lung tissue
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Multidimensional immunolabeling and 4D time-lapse imaging of vital ex vivo lung tissue

机译:生命离体肺组织的多维免疫标记和4D次间隔成像

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摘要

During the last decades, the study of cell behavior was largely accomplished in uncoated or extracellular matrix (ECM)-coated plastic dishes. To date, considerable cell biological efforts have tried to model in vitro the natural microenvironment found in vivo. For the lung, explants cultured ex vivo as lung tissue cultures (LTCs) provide a three-dimensional (3D) tissue model containing all cells in their natural microenvironment. Techniques for assessing the dynamic live interaction between ECM and cellular tissue components, however, are still missing. Here, we describe specific multidimensional immunolabeling of living 3D-LTCs, derived from healthy and fibrotic mouse lungs, as well as patient-derived 3D-LTCs, and concomitant real-time four-dimensional multichannel imaging thereof. This approach allowed the evaluation of dynamic interactions between mesenchymal cells and mac-rophages with their ECM. Furthermore, fibroblasts transiently expressing focal adhesions markers incorporated into the 3D-LTCs, paving new ways for studying the dynamic interaction between cellular adhesions and their natural-derived ECM. A novel protein transfer technology (Fuselt/Ibidi) shuttled fluorescently labeled a-smooth muscle actin antibodies into the native cells of living 3D-LTCs, enabling live monitoring of a-smooth muscle actin-positive stress fibers in native tissue myofibroblasts residing in fibrotic lesions of 3D-LTCs. Finally, this technique can be applied to healthy and diseased human lung tissue, as well as to adherent cells in conventional two-dimensional cell culture. This novel method will provide valuable new insights into the dynamics of ECM (patho)biology, studying in detail the interaction between ECM and cellular tissue components in their natural microenvironment.
机译:在过去的几十年中,在未涂覆或细胞外基质(ECM)涂层塑料盘中,细胞行为的研究主要是在很大程度上完成的。迄今为止,相当大的细胞生物努力试图在体外体内模拟体外的天然微观环境。对于肺,作为肺组织培养物(LTC)培养的外植体提供含有其天然微环境中的所有细胞的三维(3D)组织模型。然而,用于评估ECM和蜂窝组织成分之间动态活组分的技术仍然缺失。在这里,我们描述了生物3D-LTC的特定多维免疫标记,源自健康和纤维化小鼠肺以及患者衍生的3D-LTC,以及伴随其实时四维多通道成像。这种方法允许评估间充质细胞与ECM之间的Mac-r次之间的动态相互作用。此外,瞬时表达掺入3D-LTC中的焦平粘连标记的成纤维细胞,铺平了研究蜂窝粘连与其天然衍生的ECM之间的动态相互作用的新方法。一种新的蛋白质转移技术(Fuselt / Ibidi)从荧光标记的荧光标记的荧光肌肌动蛋白抗体进入生活3D-LTC的天然细胞中,使得在栖息于纤维化病变的天然组织肌纤维细胞中的平滑肌肌动蛋白阳性应激纤维的实际监测3D-LTCS。最后,该技术可以应用于健康和患病的人肺组织,以及常规二维细胞培养中的粘附细胞。这种新方法将为ECM(Patho)生物学的动态提供有价值的新见解,详细研究了他们天然微环境中ECM和细胞组织成分之间的相互作用。

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