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Optical Projection Tomography Imaging of Single Cells in 3D Gellan Gum Hydrogel

机译:3D Gellan Gum Hydrogel中单细胞的光学投影断层扫描成像

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3D cell culturing has become attractive in biology and tissue engineering laboratories as it mimics the natural environment for the cells to grow, differentiate and interact in all directions. To study cells and cellular interactions within 3D, cell culture requires a non-invasive, non-toxic, and high resolution imaging technique. The existing imaging techniques face challenges to image cells in 3D macro-scale environment because of the sample size, photo-bleaching or resolution requirements. Optical projection tomography (OPT) is a non-invasive 3D imaging technique for samples in the range of 1-10 mm. It works in both emission and transmission modes for fluorescence and bright-field imaging, respectively. Here, we demonstrate the use of OPT for imaging of cells and cellular materials in 3D gellan gum hydrogel. Fluorescence projection images showed alive and dead human lung fibroblast cells encapsulated in hydrogel. The mineralized extracellular matrix secreted by the human adipose stem cells in the hydrogel was evenly distributed throughout the sample and analyzable in 3D volume.
机译:3D细胞培养在生物学和组织工程实验室中变得有吸引力,因为它模拟了细胞的自然环境,以各方向分化和互动。为了研究3D内的细胞和细胞相互作用,细胞培养需要非侵入性,无毒和高分辨率的成像技术。由于样品大小,光漂白或分辨率要求,现有的成像技术对3D宏观环境中的图像细胞面临挑战。光学投影断层扫描(OPT)是一种用于样品的非侵入式3D成像技术,其范围为1-10mm。它分别适用于荧光和亮场成像的发射和传输模式。在这里,我们证明了选择在3D Gellan Gum水凝胶中的细胞和细胞材料成像使用。荧光投影图像显示在水凝胶中包封的活性和死的人肺成纤维细胞。水凝胶中的人脂肪干细胞分泌的矿化细胞外基质均匀地分布在整个样品中并在3D体积中进行分析。

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