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Imaging the Zebrafish Dentition: From Traditional Approaches to Emerging Technologies

机译:成像斑马鱼的牙齿:从传统方法到新兴技术

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摘要

The zebrafish, a model organism for which a plethora of molecular and genetic techniques exists, has a lifelong replacing dentition of 22 pharyngeal teeth. This is in contrast to the mouse, which is the key organism in dental research but whose teeth are never replaced. Employing the zebrafish as the main organism to elucidate the mechanisms of continuous tooth replacement, however, poses at least one major problem, related to the fact that all teeth are located deep inside the body. Investigating tooth replacement thus relies on conventional histological methods, which are often laborious, time-consuming and can cause tissue deformations. In this review, we investigate the advantages and limitations of adapting current visualization techniques to dental research in zebrafish. We discuss techniques for fast sectioning, such as vibratome sectioning and high-resolution episcopic microscopy, and methods for in toto visualization, such as Alizarin red staining, micro-computed tomography, and optical projection tomography. Techniques for in vivo imaging, such as two-photon excitation fluorescence and second harmonic generation microscopy, are also covered. Finally, the possibilities of light sheet microscopy are addressed.
机译:斑马鱼是一种存在大量分子和遗传技术的模型生物,具有终身更换的22个咽齿的牙列。这与小鼠相反,后者是牙科研究中的关键生物,但其牙齿从未被替换。但是,以斑马鱼为主要生物来阐明连续牙齿替换的机制,至少引起了一个主要问题,该问题与所有牙齿都位于体内深处有关。因此,研究牙齿的替换依赖于常规的组织学方法,该方法通常费力,费时并且会引起组织变形。在这篇综述中,我们研究了将当前的可视化技术应用于斑马鱼牙科研究的优势和局限性。我们讨论了用于快速切片的技术,例如振动切片术和高分辨率镜检显微镜,以及用于内部可视化的方法,例如茜素红染色,微计算机断层扫描和光学投影断层扫描。还涵盖了体内成像技术,例如双光子激发荧光和二次谐波显微镜。最后,探讨了光片显微镜的可能性。

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