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野生型、[此处可能缺失特定基因相关表述]和[此处可能缺失特定基因相关表述]小鼠早期釉质形成的超微结构:成釉细胞在牙本质矿物质上启动釉质带形成及釉质带的定向排列。

Ultrastructure of early amelogenesis in wild-type, , and mice: enamel ribbon initiation on dentin mineral and ribbon orientation by ameloblasts.

作者信息

Smith Charles E, Hu Yuanyuan, Hu Jan C-C, Simmer James P

机构信息

Department of Biologic and Materials SciencesUniversity of Michigan School of Dentistry1210 Eisenhower PlaceAnn ArborMichigan48108; Facility for Electron Microscopy ResearchDepartment of Anatomy and Cell BiologyFaculty of DentistryMcGill UniversityMontrealQuebecH3A 0C7Canada.

Department of Biologic and Materials Sciences University of Michigan School of Dentistry 1210 Eisenhower Place Ann Arbor Michigan 48108.

出版信息

Mol Genet Genomic Med. 2016 Oct 16;4(6):662-683. doi: 10.1002/mgg3.253. eCollection 2016 Nov.

Abstract

INTRODUCTION

Dental enamel is comprised of highly organized, oriented apatite crystals, but how they form is unclear.

METHODS

We used focused ion beam (FIB) scanning electron microscopy (SEM) to investigate early enamel formation in 7-week-old incisors from wild-type, , and C56BL/6 mice. FIB surface imaging scans thicker samples so that the thin enamel ribbons do not pass as readily out of the plane of section, and generates serial images by a mill and view approach for computerized tomography.

RESULTS

We demonstrate that wild-type enamel ribbons initiate on dentin mineral on the sides and tips of mineralized collagen fibers, and extend in clusters from dentin to the ameloblast membrane. The clustering suggested that groups of enamel ribbons were initiated and then extended by finger-like membrane processes as they retracted back into the ameloblast distal membrane. These findings support the conclusions that no organic nucleator is necessary for enamel ribbon initiation (although no ribbons form in the mice), and that enamel ribbons elongate along the ameloblast membrane and orient in the direction of its retrograde movement. Tomographic reconstruction videos revealed a complex of ameloblast membrane processes and invaginations associated with intercellular junctions proximal to the mineralization front and also highlighted interproximal extracellular enamel matrix accumulations proximal to the interrod growth sites, which we propose are important for expanding the interrod matrix and extending interrod enamel ribbons. mice produce oriented enamel ribbons, but the ribbons fuse into fan-like structures. The matrix does not expand sufficiently to support formation of the Tomes process or establish rod and interrod organization.

CONCLUSION

Amelogenin does not directly nucleate, shape, or orient enamel ribbons, but separates and supports the enamel ribbons, and expands the enamel matrix to accommodate continued ribbon elongation, retrograde ameloblast movement, and rod/interrod organization.

摘要

引言

牙釉质由高度有序、定向排列的磷灰石晶体组成,但它们的形成方式尚不清楚。

方法

我们使用聚焦离子束(FIB)扫描电子显微镜(SEM)来研究野生型、 和C56BL/6小鼠7周龄切牙的早期釉质形成。FIB表面成像扫描较厚的样本,以使薄的釉质带不易轻易穿出切片平面,并通过铣削和观察方法生成用于计算机断层扫描的系列图像。

结果

我们证明野生型釉质带在矿化胶原纤维侧面和尖端的牙本质矿物质上起始,并以簇状从牙本质延伸至成釉细胞膜。这种簇状现象表明,釉质带群起始后,随着它们回缩到成釉细胞远端膜中,通过指状膜突延伸。这些发现支持以下结论:釉质带起始不需要有机成核剂(尽管在 小鼠中不形成釉质带),并且釉质带沿着成釉细胞膜伸长并沿其逆行运动方向定向。断层重建视频揭示了与矿化前沿近端细胞间连接相关的成釉细胞膜突和内陷复合体,还突出了杆间生长部位近端的近中细胞外釉质基质积累,我们认为这对于扩展杆间基质和延伸杆间釉质带很重要。 小鼠产生定向的釉质带,但这些带融合成扇形结构。基质没有充分扩展以支持托姆斯突的形成或建立釉柱和釉柱间质组织。

结论

釉原蛋白不直接使釉质带成核、塑形或定向,而是将釉质带分开并支撑它们,并扩展釉质基质以适应釉质带的持续伸长、成釉细胞逆行运动以及釉柱/釉柱间质组织的形成。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/9a34/5118210/09d07b3410f9/MGG3-4-662-g001.jpg

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