Kerley M A, Kollar E J
Am J Anat. 1977 Jun;149(2):181-95. doi: 10.1002/aja.1001490205.
Mandibular incisors were dissected from the jaw of 15- and 16-day C57BL/10 mouse embryos and cultured on agar-solidified Eagle's basal medium supplemented with fetal calf serum, an antibiotic, and glutamine, The experimental medium was the same as the control except that fluoride was added such that the final concentrations ranged from 2.0-8.0 mM NaF. Control and experimental explants were recovered after two, four and six days of incubation and studied histologically. After two days of fluoride treatment (3.0 mM NaF), cellular degeneration was observed in the dental papilla mesenchyme while the enamel organ epithelium appeared more resistant. Prolonged treatment or treatment at higher concentrations resulted in destruction of the dental papilla. The enamel organ was still present but was abnormal and reduced. Older tooth germs were less affected overal when incubated at the same fluoride dosage and time of treatment. When explants subjected to limited exposure (2 days) to fluoride were placed on control medium, the suppressed tooth germs recovered. The recovery was enhanced by grafting untreated mesenchyme to the treated explants followed by incubation on control medium. The observations indicate that NaF can suppress the development of tooth germs in vitro and that recovery from the suppresion does occur. The more severe inhibition observed in the mesenchymal component when compared to the response of the epithelial component of the treated explants suggests that fluoride may alter the ultimate morphology of the tooth crown by disrupting the normal epithelial-mesenchymal interaction which occurs during early tooth development.
从15至16日龄的C57BL/10小鼠胚胎颌骨中分离出下颌切牙,接种于添加了胎牛血清、抗生素和谷氨酰胺的琼脂固化伊格尔基础培养基上。实验培养基与对照培养基相同,只是添加了氟化物,使最终浓度范围为2.0 - 8.0 mM NaF。在孵育两天、四天和六天后回收对照和实验外植体,并进行组织学研究。在氟化物处理两天(3.0 mM NaF)后,观察到牙乳头间充质细胞变性,而釉器上皮似乎更具抗性。延长处理时间或提高浓度会导致牙乳头破坏。釉器仍然存在,但形态异常且缩小。在相同氟化物剂量和处理时间下孵育时,较成熟的牙胚总体受影响较小。当将有限暴露于氟化物(2天)的外植体置于对照培养基上时,受抑制的牙胚会恢复。将未处理的间充质移植到处理过的外植体上,然后在对照培养基上孵育,可增强恢复效果。这些观察结果表明,NaF可在体外抑制牙胚发育,且确实会从这种抑制中恢复。与处理过的外植体的上皮成分相比,在间充质成分中观察到的更严重抑制表明,氟化物可能通过破坏早期牙齿发育过程中发生的正常上皮 - 间充质相互作用来改变牙冠的最终形态。