首页> 外文会议>Conference on Multiphoton Microscopy in the Biomedical Sciences Jan 21-23, 2001, San Jose, USA >Analysis of Somitogenesis Using Multiphoton Laser Scanning Microscopy (MPLSM)
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Analysis of Somitogenesis Using Multiphoton Laser Scanning Microscopy (MPLSM)

机译:使用多光子激光扫描显微镜(MPLSM)分析体细胞发生

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In order to study complex cellular interactions in the developing somite and nervous system, we have been refining techniques for labeling and imaging individual cells within the living vertebrate embryo. Most recently, we have been using MPLSM to analyze cellular behaviors, such as cell migration, filopodial extension, cell process collapse, and neuron pathfinding using time-lapse microscopy in 3-dimensions (3-d). To enhance the efficiency of two-photon excitation in these samples, we have been using a Zeiss LSM 510 NLO fiber delivery system with a Grating Dispersion Compensator (GDC). This system not only offers the convenience of fiber delivery for coupling our Ti:Sapphire laser to the microscope, but also affords us precise control over the pulsewidth of the mode-locked beam. In addition, we have developed a novel peptideon-cationic lipid gene delivery system to introduce GFP plasmid into somite cells. This approach has allowed us to generate detailed 3-d images of somite cell morphologies at various stages of somite development in a way that best preserves the vitality of the cells being imaged.
机译:为了研究发育中的somite和神经系统中复杂的细胞相互作用,我们一直在完善用于标记和成像活的脊椎动物胚胎中单个细胞的技术。最近,我们一直在使用MPLSM使用延时显微镜在3维(3-d)中分析细胞行为,例如细胞迁移,丝状扩展,细胞过程崩溃和神经元寻路。为了提高这些样品中的双光子激发效率,我们一直在使用带光栅色散补偿器(GDC)的Zeiss LSM 510 NLO光纤传输系统。该系统不仅为将我们的Ti:Sapphire激光器耦合到显微镜提供了方便的光纤传输方式,而且还为我们提供了对锁模光束的脉宽的精确控制。此外,我们已经开发了一种新型的肽/非阳离子脂质基因递送系统,可以将GFP质粒导入体细胞。这种方法使我们能够以最好的方式保留被成像细胞的活力,从而在somite发育的各个阶段生成somite细胞形态的详细3-d图像。

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