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首页> 外文期刊>European Journal of Cell Biology: Journal of Deutsche Gesellschaft fur Elektronenmikroskopie: Journal of Deutsche Gesellschaft fur Zellbiologie >In vivo imaging of green fluorescent protein-expressing cells in transgenic animals using fibred confocal fluorescence microscopy
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In vivo imaging of green fluorescent protein-expressing cells in transgenic animals using fibred confocal fluorescence microscopy

机译:使用纤维共聚焦荧光显微镜对转基因动物中表达绿色荧光蛋白的细胞进行体内成像

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摘要

Animal imaging requires the use of reliable long-term fluorescence methods and technology. The application of confocal imaging to in vivo monitoring of transgene expression within internal organs and tissues has been limited by the accessibility to these sites. We aimed to test the feasibility of fibred confocal fluorescence microscopy (FCFM) to image in situ green fluorescent protein (GFP) in cells of living animals. We used transgenic rabbits expressing the enhanced GFP (eGFP) gene. Detailed tissue architecture and cell morphology were visualised and identified in situ by FCFM. Imaging of vasculature by using FCFM revealed a single blood vessel or vasculature network. We also used non-transgenic female rabbits mated with transgenic males to visualise eGFP expression in extra-foetal membranes and the placenta. Expression of the eGFP gene was confirmed by FCFM. This new imaging technology offers specific characteristics: a way to gain access to organs and tissues in vivo, sensitive detection of fluorescent signals, and cellular observations with rapid acquisition at near real time. It allows an accurate visualisation of tissue anatomical structure and cell morphology. FCFM is a promising technology to study biological processes in the natural physiological environment of living animals.
机译:动物成像需要使用可靠的长期荧光方法和技术。共聚焦成像在体内监测内部器官和组织内转基因表达的应用受到这些部位可及性的限制。我们旨在测试纤维共聚焦荧光显微镜(FCFM)对活体动物细胞中原位绿色荧光蛋白(GFP)成像的可行性。我们使用了表达增强的GFP(eGFP)基因的转基因兔。详细的组织结构和细胞形态可视化并通过FCFM进行原位鉴定。通过使用FCFM成像的脉管系统揭示了单个血管或脉管系统网络。我们还使用了与转基因雄性交配的非转基因雌性兔子来观察胎外膜和胎盘中的eGFP表达。通过FCFM确认了eGFP基因的表达。这项新的成像技术具有特定的特征:一种可在体内接近器官和组织的方式,对荧光信号的灵敏检测以及在近乎实时的快速采集下进行细胞观察的方法。它可以准确地显示组织解剖结构和细胞形态。 FCFM是一种有前途的技术,可用于研究活体动物自然生理环境中的生物过程。

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