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高分辨率活体显微镜技术。

High-resolution intravital microscopy.

机构信息

LaVision Biotec GmbH, Bielefeld, Germany.

出版信息

PLoS One. 2012;7(12):e50915. doi: 10.1371/journal.pone.0050915. Epub 2012 Dec 14.

Abstract

Cellular communication constitutes a fundamental mechanism of life, for instance by permitting transfer of information through synapses in the nervous system and by leading to activation of cells during the course of immune responses. Monitoring cell-cell interactions within living adult organisms is crucial in order to draw conclusions on their behavior with respect to the fate of cells, tissues and organs. Until now, there is no technology available that enables dynamic imaging deep within the tissue of living adult organisms at sub-cellular resolution, i.e. detection at the level of few protein molecules. Here we present a novel approach called multi-beam striped-illumination which applies for the first time the principle and advantages of structured-illumination, spatial modulation of the excitation pattern, to laser-scanning-microscopy. We use this approach in two-photon-microscopy--the most adequate optical deep-tissue imaging-technique. As compared to standard two-photon-microscopy, it achieves significant contrast enhancement and up to 3-fold improved axial resolution (optical sectioning) while photobleaching, photodamage and acquisition speed are similar. Its imaging depth is comparable to multifocal two-photon-microscopy and only slightly less than in standard single-beam two-photon-microscopy. Precisely, our studies within mouse lymph nodes demonstrated 216% improved axial and 23% improved lateral resolutions at a depth of 80 µm below the surface. Thus, we are for the first time able to visualize the dynamic interactions between B cells and immune complex deposits on follicular dendritic cells within germinal centers (GCs) of live mice. These interactions play a decisive role in the process of clonal selection, leading to affinity maturation of the humoral immune response. This novel high-resolution intravital microscopy method has a huge potential for numerous applications in neurosciences, immunology, cancer research and developmental biology. Moreover, our striped-illumination approach is able to improve the resolution of any laser-scanning-microscope, including confocal microscopes, by simply choosing an appropriate detector.

摘要

细胞通讯构成了生命的基本机制,例如通过在神经系统中的突触传递信息,并在免疫反应过程中导致细胞的激活。监测活体成年生物体内的细胞-细胞相互作用对于得出关于细胞、组织和器官命运的行为结论至关重要。到目前为止,还没有可用的技术能够以亚细胞分辨率(即检测几个蛋白质分子的水平)在活体成年生物的组织内进行动态成像。在这里,我们提出了一种称为多光束条纹照明的新方法,该方法首次将结构照明的原理和优势(激发模式的空间调制)应用于激光扫描显微镜。我们在双光子显微镜中使用这种方法——最适合光学深层组织成像技术。与标准双光子显微镜相比,它实现了显著的对比度增强和高达 3 倍的轴向分辨率提高(光学切片),同时光漂白、光损伤和采集速度相似。它的成像深度与多焦点双光子显微镜相当,略低于标准单光束双光子显微镜。确切地说,我们在小鼠淋巴结中的研究表明,在表面以下 80 µm 的深度处,轴向和侧向分辨率分别提高了 216%和 23%。因此,我们首次能够可视化活体小鼠生发中心(GC)中 B 细胞与滤泡树突状细胞上免疫复合物沉积物之间的动态相互作用。这些相互作用在克隆选择过程中起着决定性的作用,导致体液免疫反应的亲和力成熟。这种新的高分辨率活体显微镜方法在神经科学、免疫学、癌症研究和发育生物学等众多应用中具有巨大的潜力。此外,我们的条纹照明方法能够通过简单地选择适当的检测器来提高任何激光扫描显微镜(包括共聚焦显微镜)的分辨率。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/ad56/3522675/7b782cf34a47/pone.0050915.g001.jpg

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