Abramyan John, Geetha-Loganathan Poongodi, Šulcová Marie, Buchtová Marcela
Department of Natural Sciences, University of Michigan-Dearborn, Dearborn, MI, United States.
Department of Biological Sciences, SUNY Oswego, Oswego, NY, United States.
Front Cell Dev Biol. 2021 Jun 18;9:671475. doi: 10.3389/fcell.2021.671475. eCollection 2021.
The development of a tooth germ in a precise size, shape, and position in the jaw, involves meticulous regulation of cell proliferation and cell death. Apoptosis, as the most common type of programmed cell death during embryonic development, plays a number of key roles during odontogenesis, ranging from the budding of the oral epithelium during tooth initiation, to later tooth germ morphogenesis and removal of enamel knot signaling center. Here, we summarize recent knowledge about the distribution and function of apoptotic cells during odontogenesis in several vertebrate lineages, with a special focus on amniotes (mammals and reptiles). We discuss the regulatory roles that apoptosis plays on various cellular processes during odontogenesis. We also review apoptosis-associated molecular signaling during tooth development, including its relationship with the autophagic pathway. Lastly, we cover apoptotic pathway disruption, and alterations in apoptotic cell distribution in transgenic mouse models. These studies foster a deeper understanding how apoptotic cells affect cellular processes during normal odontogenesis, and how they contribute to dental disorders, which could lead to new avenues of treatment in the future.
牙胚在颌骨中精确的大小、形状和位置的发育,涉及细胞增殖和细胞死亡的精细调控。凋亡作为胚胎发育过程中最常见的程序性细胞死亡类型,在牙齿发生过程中发挥着许多关键作用,从牙齿起始时口腔上皮的出芽,到后来的牙胚形态发生以及釉结信号中心的清除。在这里,我们总结了关于几种脊椎动物谱系牙齿发生过程中凋亡细胞的分布和功能的最新知识,特别关注羊膜动物(哺乳动物和爬行动物)。我们讨论了凋亡在牙齿发生过程中对各种细胞过程所起的调控作用。我们还回顾了牙齿发育过程中与凋亡相关的分子信号传导,包括其与自噬途径的关系。最后,我们涵盖了转基因小鼠模型中凋亡途径的破坏以及凋亡细胞分布的改变。这些研究有助于更深入地了解凋亡细胞在正常牙齿发生过程中如何影响细胞过程,以及它们如何导致牙齿疾病,这可能会在未来带来新的治疗途径。