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一种用于研究小鼠破骨细胞中负载诱导钙信号动力学的荧光活体成像方法。

A Fluorescent Intravital Imaging Approach to Study Load-Induced Calcium Signaling Dynamics in Mouse Osteocytes.

机构信息

Meinig School of Biomedical Engineering, Cornell University;

Department of Biomedical Engineering, The City College of New York.

出版信息

J Vis Exp. 2023 Feb 24(192). doi: 10.3791/64366.

Abstract

Bone tissue is exquisitely sensitive to differences in mechanical load magnitude. Osteocytes, dendritic cells that form a syncytium throughout the bone, are responsible for the mechanosensory function of bone tissue. Studies employing histology, mathematical modeling, cell culture, and ex vivo bone organ cultures have greatly advanced the understanding of osteocyte mechanobiology. However, the fundamental question of how osteocytes respond to and encode mechanical information at the molecular level in vivo is not well understood. Intracellular calcium concentration fluctuations in osteocytes offer a useful target for learning more about acute bone mechanotransduction mechanisms. Here, we report a method for studying osteocyte mechanobiology in vivo, combining a mouse strain with a fluorescently genetically encoded calcium indicator expressed in osteocytes with an in vivo loading and imaging system to directly detect osteocyte calcium levels during loading. This is achieved with a three-point bending device that can deliver well-defined mechanical loads to the third metatarsal of living mice while simultaneously monitoring fluorescently indicated calcium responses of osteocytes using two-photon microscopy. This technique allows for direct in vivo observation of osteocyte calcium signaling events in response to whole bone loading and is useful in the endeavor to reveal mechanisms in osteocyte mechanobiology.

摘要

骨组织对机械负荷大小的变化非常敏感。骨细胞是形成贯穿整个骨骼的合胞体的树突状细胞,负责骨组织的机械感觉功能。采用组织学、数学建模、细胞培养和体外骨器官培养的研究极大地促进了对骨细胞机械生物学的理解。然而,骨细胞如何在体内对机械信息做出反应并进行编码的基本问题尚不清楚。骨细胞内钙离子浓度波动为了解急性骨机械转导机制提供了一个有用的研究目标。在这里,我们报告了一种在体内研究骨细胞机械生物学的方法,将一种带有荧光基因编码钙指示剂的小鼠品系与体内加载和成像系统相结合,直接在加载过程中检测骨细胞中的钙水平。这是通过三点弯曲装置来实现的,该装置可以向活鼠的第三跖骨施加定义明确的机械负荷,同时使用双光子显微镜监测骨细胞中荧光指示的钙响应。该技术允许直接在体内观察骨细胞钙信号事件对整个骨加载的反应,这对于揭示骨细胞机械生物学中的机制非常有用。

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