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Intravital two-photon microscopy for studying the uptake and trafficking of fluorescently conjugated molecules in live rodents

机译:活体双光子显微镜研究活啮齿动物中荧光共轭分子的吸收和运输

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摘要

Here we describe an experimental system based on intravital two-photon microscopy for studying endocytosis in live animals. The rodent submandibular glands were chosen as model organs since they can be exposed easily, imaged without compromising their function and, furthermore, they are amenable to pharmacological and genetic manipulations. We show that the fibroblasts within the stroma of the glands readily internalize systemically injected molecules such as fluorescently conjugated dextran and bovine serum albumin, providing a robust model to study endocytosis. We dynamically image the trafficking of these probes from the early endosomes to the late endosomes and lysosomes while also visualizing homotypic fusion events between early endosomes. Finally, we demonstrate that pharmacological agents can be delivered specifically to the submandibular salivary glands thus providing a powerful tool to study the molecular machinery regulating endocytosis in a physiological context.
机译:在这里,我们描述了一种基于活体双光子显微镜的实验系统,用于研究活体动物的胞吞作用。选择啮齿动物下颌下腺作为模型器官是因为它们可以很容易地暴露,成像而不损害其功能,并且它们还可以进行药理和基因操作。我们显示腺体基质内的成纤维细胞易于内化全身注射的分子,例如荧光偶联的葡聚糖和牛血清白蛋白,为研究内吞作用提供了可靠的模型。我们动态地成像这些探针从早期内体到晚期内体和溶酶体的运输,同时还可视化了早期内体之间的同型融合事件。最后,我们证明了可以将药理剂特异性地递送至颌下唾液腺,从而提供了一个强大的工具来研究在生理背景下调节内吞作用的分子机制。

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