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4Pi-SHG imaging of mammalian myofibrillar structures

机译:哺乳动物肌原纤维结构的4Pi-SHG成像

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Intrinsic Second Harmonic Generation (SHG) signals obtained from the motor protein myosin are of particular interest for 3D-imaging of living muscle cells. In addition, the new and powerful tool of 4Pi microscopy allows to markedly enhance the optical resolution of microscopy as well as the sensitivity for small objects because of the high peak intensities due to the interference pattern created in the focus. In the present study, we report, to our knowledge for the first time, measurements of intrinsic SHG signals under 4Pi conditions of type A. These measurements on mammalian myofibrilar structures are combined with very high resolution 4Pi fluorescence data obtained from the same preparations. We have chosen myofibrillar preparations of isolated mammalian muscle fibers as they (ⅰ) possess a regular repetitive pattern of actin and myosin filaments within sarcomers 2 to 3 μm in length, (ⅱ) consist of single myofibrils of small total diameter of approximately 1 μm and (ⅲ) are ideally suited to study the biomedically important process of force generation via calcium regulated motor protein interactions. Myofibrillar preparations were obtained from murine skeletal and heart muscle by using a combined chemical and mechanical fractionation (Both et al. 2004, JBO 9(5):882-892). BODIPY FL phallacidin has been used to tluorescently label the actin filaments. The experiments were carried out with a Leica SP2 multi photon microscope modified for 4Pi measurements using a Ti:Sa laser tuned to 850-900 nm. SHG as well as fluorescence photons were detected confocally by a counting APD detector. The approach taken our study provides new 3D-data for the analysis and simulation of the important process of excitation-contraction coupling under normal physiological as well as under pathophysiological conditions.
机译:从运动蛋白肌球蛋白获得的内在第二谐波产生(SHG)信号对于活肌细胞的3D成像特别感兴趣。此外,由于焦点上产生的干涉图样具有很高的峰值强度,因此4Pi显微镜的新功能强大的工具可以显着提高显微镜的光学分辨率以及对小物体的灵敏度。在本研究中,我们首次向我们报告了在A型4Pi条件下内在SHG信号的测量结果。这些对哺乳动物肌原纤维结构的测量结果与从相同制剂中获得的高分辨率4Pi荧光数据相结合。我们选择了分离的哺乳动物肌肉纤维的肌原纤维制剂,因为它们(ⅰ)在肉瘤长度2至3μm内具有规则的重复性肌动蛋白和肌球蛋白丝,(ⅱ)由单个总直径约1μm的肌原纤维组成,并且(ⅲ)非常适合研究通过钙调节的运动蛋白相互作用产生力的生物医学重要过程。通过组合的化学和机械分离从鼠骨骼和心肌获得肌原纤维制剂(Both等人,2004,JBO 9(5):882-892)。 BODIPY FL鬼笔环肽已用于荧光标记肌动蛋白丝。实验是使用Leica SP2多光子显微镜进行的,该显微镜经修改用于4Pi测量,使用的Ti:Sa激光调谐至850-900 nm。 SHG和荧光光子通过计数APD检测器共聚焦检测。我们的研究方法为正常生理以及病理生理条件下的兴奋-收缩偶联的重要过程的分析和模拟提供了新的3D数据。

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