Fujiwara Naoki, Akimoto Tadashi, Otsu Keishi, Kagiya Tadayoshi, Ishizeki Kiyoto, Harada Hidemitsu
Department of Oral Anatomy II, School of Dentistry, Iwate Medical University, Morioka, Iwate, Japan.
J Exp Zool B Mol Dev Evol. 2009 Jul 15;312B(5):486-94. doi: 10.1002/jez.b.21268.
Mouse, rat, and human molars begin to form their roots after the completion of crown morphogenesis. Though several signaling pathways and transcription factors have been implicated in the regulation of molar crown development, relatively little is known about the regulatory mechanisms involved in the transition from crown to root development. Tooth root formation is initiated by the development of Hertwig's epithelial root sheath (HERS) from the cervical loop in the enamel organ. In this study we examined the change in epidermal growth factor (Egf) signaling during this transition process. Immunohistochemical studies showed that the expression of Egf receptors in the enamel organ disappear gradually in the process and are not observed in HERS. Here, to examine the effect of Egf on the transition, we used the organ culture method to examine the root development. In the presence of Egf, stellate reticulum (SR) cells between the inner and outer epithelial layers in the enamel organ actively proliferated and maintained the enamel organ, and the formation of HERS was not observed. On the other hand, in either the absence of Egf or the presence of the inhibitor of Egf receptors, the SR cells disappeared and HERS formation started. Subsequently, root formation proceeded in the culture period. Therefore, disappearance of SR area may be a key event that controls the timing of onset of HERS formation, and Egf may be one of regulatory factors involved in the change from cervical loop epithelium to HERS during root development.
小鼠、大鼠和人类的磨牙在牙冠形态发生完成后开始形成牙根。尽管有几种信号通路和转录因子参与了磨牙牙冠发育的调控,但对于从牙冠发育过渡到牙根发育所涉及的调控机制却知之甚少。牙根部的形成是由釉质器官中颈环处的赫特维希上皮根鞘(HERS)发育启动的。在本研究中,我们检测了这一过渡过程中表皮生长因子(Egf)信号的变化。免疫组织化学研究表明,釉质器官中Egf受体的表达在此过程中逐渐消失,在HERS中未观察到。在此,为了检测Egf对这一过渡的影响,我们采用器官培养方法来检测牙根发育情况。在有Egf存在的情况下,釉质器官内外上皮层之间的星网状层(SR)细胞积极增殖并维持釉质器官,未观察到HERS的形成。另一方面,在没有Egf或存在Egf受体抑制剂的情况下,SR细胞消失,HERS形成开始。随后,在培养期牙根形成继续进行。因此,SR区域的消失可能是控制HERS形成起始时间的关键事件,并且Egf可能是牙根发育过程中参与从颈环上皮向HERS转变的调控因子之一。