Wood Jamie L, Hughes Ami J, Mercer Kathryn J, Chapman Susan C
Clemson University, Biological Sciences, Long Hall, Clemson, SC 29634, USA.
BMC Dev Biol. 2010 Feb 16;10:16. doi: 10.1186/1471-213X-10-16.
The chick middle ear bone, the columella, provides an accessible model in which to study the tissue and molecular interactions necessary for induction and patterning of the columella, as well as associated multiple aspects of endochondral ossification. These include mesenchymal condensation, chondrogenesis, ossification of the medial footplate and shaft, and joint formation between the persistent cartilage of the extracolumella and ossified columella. Middle and external ear defects are responsible for approximately 10% of congenital hearing defects. Thus, understanding the morphogenesis and the molecular mechanisms of the formation of the middle ear is important to understanding normal and abnormal development of this essential component of the hearing apparatus.
The columella, which arises from proximal ectomesenchyme of the second pharyngeal arch, is induced and patterned in a dynamic multi-step process. From the footplate, which inserts into the inner ear oval window, the shaft spans the pneumatic middle ear cavity, and the extracolumella inserts into the tympanic membrane. Through marker gene and immunolabeling analysis, we have determined the onset of each stage in the columella's development, from condensation to ossification. Significantly, a single condensation with the putative shaft and extracolumella arms already distinguishable is observed shortly before initiation of five separate chondrogenic centers within these structures. Ossification begins later, with periosteum formation in the shaft and, unexpectedly, a separate periosteum in the footplate.
The data presented in this study document the spatiotemporal events leading to morphogenesis of the columella and middle ear structures and provide the first gene expression data for this region. These data identify candidate genes and facilitate future functional studies and elucidation of the molecular mechanisms of columella formation.
鸡的中耳骨——耳柱骨,为研究耳柱骨诱导和模式形成所需的组织及分子相互作用,以及软骨内成骨相关的多个方面,提供了一个易于研究的模型。这些方面包括间充质凝聚、软骨形成、内侧足板和骨干的骨化,以及耳柱骨外软骨与骨化耳柱骨之间的关节形成。中耳和外耳缺陷约占先天性听力缺陷的10%。因此,了解中耳形成的形态发生和分子机制,对于理解听觉器官这一重要组成部分的正常和异常发育至关重要。
耳柱骨起源于第二咽弓的近端外胚间充质,在一个动态的多步骤过程中被诱导并形成模式。从插入内耳椭圆窗的足板开始,骨干跨越含气的中耳腔,耳柱骨外结构插入鼓膜。通过标记基因和免疫标记分析,我们确定了耳柱骨从凝聚到骨化发育过程中每个阶段的起始时间。值得注意的是,在这些结构内五个独立的软骨生成中心开始形成之前不久,就观察到一个单一的凝聚物,其中假定的骨干和耳柱骨外臂已经可以区分。骨化稍后开始,骨干中形成骨膜,出乎意料的是,足板中也形成了一个单独的骨膜。
本研究提供的数据记录了导致耳柱骨和中耳结构形态发生的时空事件,并提供了该区域的首个基因表达数据。这些数据确定了候选基因,有助于未来的功能研究和阐明耳柱骨形成的分子机制。