Sramkova Monika, Masedunskas Andrius, Parente Laura, Molinolo Alfredo, Weigert Roberto
Intracellular Membrane Trafficking Unit, National Institute of Dental and Craniofacial Research, NIH, Bethesda, MD 20892-4340, USA.
Am J Physiol Cell Physiol. 2009 Dec;297(6):C1347-57. doi: 10.1152/ajpcell.00262.2009. Epub 2009 Sep 30.
The ability to dynamically image cellular and subcellular structures in a live animal and to target genes to a specific cell population in a living tissue provides a unique tool to address many biological questions in the proper physiological context. Here, we describe a powerful approach that is based on the use of rat submandibular salivary glands, which offer the possibility to easily perform intravital imaging and deliver molecules from the oral cavity, and plasmid DNA, which offers the advantage of rapid manipulations. We show that, under different experimental conditions, a reporter molecule can be rapidly expressed in specific compartments of the glands: 1) in the intercalated ducts, when plasmid DNA is administered alone, and 2) in granular ducts, striated ducts, and, to a lesser extent, acini, when plasmid DNA is mixed with replication-deficient adenovirus subtype 5 particles. Remarkably, we also found that gene expression can be directed to acinar cells when plasmid DNA is administered during isoproterenol-stimulated exocytosis, suggesting a novel mechanism of plasmid internalization regulated by compensatory endocytosis. Finally, as a practical application of these strategies, we show how the expression of fluorescently tagged molecules enables the study of the dynamics of various organelles in live animals at a resolution comparable to that achieved in cell cultures.
在活体动物中对细胞和亚细胞结构进行动态成像以及将基因靶向活组织中的特定细胞群的能力,为在适当的生理背景下解决许多生物学问题提供了一种独特的工具。在此,我们描述了一种强大的方法,该方法基于使用大鼠下颌下唾液腺,它提供了轻松进行活体成像并从口腔递送分子的可能性,以及质粒DNA,其具有操作快速的优点。我们表明,在不同的实验条件下,报告分子可以在腺体的特定区域快速表达:1)当单独给予质粒DNA时,在闰管中表达;2)当质粒DNA与复制缺陷型腺病毒5型颗粒混合时,在颗粒管、纹状管以及程度较轻的腺泡中表达。值得注意的是,我们还发现,当在异丙肾上腺素刺激的胞吐过程中给予质粒DNA时,基因表达可以导向腺泡细胞,这表明存在一种由代偿性内吞作用调节的质粒内化新机制。最后,作为这些策略的实际应用,我们展示了荧光标记分子的表达如何能够在活体动物中以与细胞培养中相当的分辨率研究各种细胞器的动态。