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小鼠残留的牙间隙牙原基没有外周神经纤维。

Mouse rudimentary diastema tooth primordia are devoid of peripheral nerve fibers.

作者信息

Løes Sigbjørn, Kettunen Päivi, Kvinnsland Hals, Luukko Keijo

机构信息

Department of Anatomy and Cell Biology, Arstadveien 19, University of Bergen, N-5009 Bergen, Norway.

出版信息

Anat Embryol (Berl). 2002 Jun;205(3):187-91. doi: 10.1007/s00429-002-0247-8. Epub 2002 May 8.

Abstract

The tooth is a well-defined peripheral target organ for trigeminal nerve fibers. However, only limited information is available regarding pioneer axon guidance to the developing tooth target field. In rodents there is a toothless diastema region between incisors and molars that in the mouse maxilla contains three rudimentary tooth anlagen. Their development stop at the early bud stage when the primary nerve axons grow towards the developing first molar tooth germs. In order to provide background information for studies of regulatory mechanisms of pioneer axon guidance to the developing tooth germs, we investigated the distribution of nerve fibers in the mouse diastema tooth buds, and compared it to the axon growth to the maxillary and mandibular first molar tooth germs by immunohistochemical localization of peripherin and PGP9.5. Analysis of serial sections showed that trigeminal nerve fibers emerging from the trigeminal maxillary and mandibular nerve trunks started to grow towards the developing molar tooth germ at the early bud stage, and subsequently they diverged into buccal and lingual branches next to the condensed dental mesenchyme. During the cap stage, nerve fibers were observed around the tooth germ in the dental follicle region. In contrast, no nerve fibers were located in the vicinity of the diastema tooth primordia at any stage studied, nor did any nerve fibers appear to grow towards this region. Our results show that the development and subsequent disappearance of the diastema tooth primordia takes place without peripheral trigeminal innervation. The diastema tooth primordia may therefore be a useful model system for future studies on molecular regulatory mechanisms of pioneer axon guidance to the tooth germs, and possibly also for evolutionary studies of peripheral axon guidance mechanisms.

摘要

牙齿是三叉神经纤维明确的外周靶器官。然而,关于先驱轴突导向发育中的牙齿靶场的信息有限。在啮齿动物中,门齿和臼齿之间有无牙的间隙区域,在小鼠上颌骨中包含三个原始牙胚。它们的发育在早期芽阶段停止,此时初级神经轴突朝着发育中的第一磨牙牙胚生长。为了为研究先驱轴突导向发育中牙胚的调节机制提供背景信息,我们通过外周蛋白和PGP9.5的免疫组织化学定位,研究了小鼠间隙牙胚中神经纤维的分布,并将其与上颌和下颌第一磨牙牙胚的轴突生长进行了比较。连续切片分析表明,从三叉上颌神经和下颌神经干发出的三叉神经纤维在早期芽阶段开始朝着发育中的磨牙牙胚生长,随后在凝聚的牙间充质旁边分成颊侧和舌侧分支。在帽状期,在牙囊区域的牙胚周围观察到神经纤维。相比之下,在所研究的任何阶段,间隙牙原基附近都没有神经纤维,也没有任何神经纤维似乎朝着这个区域生长。我们的结果表明,间隙牙原基的发育及随后的消失是在没有外周三叉神经支配的情况下发生的。因此间隙牙原基可能是未来研究先驱轴突导向牙胚的分子调节机制的有用模型系统,也可能用于外周轴突导向机制的进化研究。

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