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技术:使用基于银的组织对比剂进行三维成像,以显示最早的牙齿发育情况。

Technique: imaging earliest tooth development in 3D using a silver-based tissue contrast agent.

机构信息

Department of Anatomy & Cell Biology College of Medicine, University of Saskatchewan, Saskatoon, Canada, SK S7N 5E5.

出版信息

Anat Rec (Hoboken). 2014 Feb;297(2):222-33. doi: 10.1002/ar.22845. Epub 2013 Dec 19.

Abstract

Looking in microscopic detail at the 3D organization of initiating teeth within the embryonic jaw has long-proved technologically challenging because of the radio-translucency of these tiny un-mineralized oral tissues. Yet 3D image data showing changes in the physical relationships among developing tooth and jaw tissues are vital to understand the coordinated morphogenesis of vertebrate teeth and jaws as an animal grows and as species evolve. Here, we present a new synchrotron-based scanning solution to image odontogenesis in 3D and in histological detail using a silver-based contrast agent. We stained fixed, intact wild-type mice aged embryonic (E) day 10 to birth with 1% Protargol-S at 37°C for 12-32 hr. Specimens were scanned at 4-10 µm pixel size at 28 keV, just above the silver K-edge, using micro-computed tomography (µCT) at the Canadian Light Source synchrotron. Synchrotron µCT scans of silver-stained embryos showed even the earliest visible stages of tooth initiation, as well as many other tissue types and structures, in histological detail. Silver stain penetration was optimal for imaging structures in intact embryos E15 and younger. This silver stain method offers a powerful yet straightforward approach to visualize at high-resolution and in 3D the earliest stages of odontogenesis in situ, and demonstrates the important of studying the tooth organ in all three planes of view.

摘要

观察胚胎颌骨中启动牙齿的 3D 组织一直具有技术挑战性,因为这些微小的未矿化口腔组织具有放射性透明性。然而,显示出牙和颌骨组织之间物理关系变化的 3D 图像数据对于理解脊椎动物牙齿和颌骨的协调形态发生至关重要,因为动物在生长和物种进化过程中会发生这种情况。在这里,我们提出了一种新的基于同步加速器的扫描解决方案,使用基于银的对比剂对 3D 和组织学细节中的牙发生进行成像。我们使用 1%Protargol-S 在 37°C 下对固定的、完整的野生型 E 天 10 至出生的小鼠进行染色,持续 12-32 小时。使用加拿大光源同步加速器的微计算机断层扫描(µCT)以 28keV 、4-10µm 像素大小对标本进行扫描,刚好在银的 K 边缘之上。银染胚胎的同步加速器 µCT 扫描显示了牙齿起始的最早可见阶段,以及许多其他组织类型和结构,具有组织学细节。对于成像完整胚胎 E15 及更年轻的结构,银染渗透最佳。这种银染方法提供了一种强大而简单的方法,可以高分辨率和 3D 可视化原位牙发生的最早阶段,并证明了在所有三个视角研究牙齿器官的重要性。

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