Growth and cellular patterning during fetal human inner ear development studied by a correlative imaging approach.

Q2 Biochemistry, Genetics and Molecular Biology
Lejo Johnson Chacko, David Wertjanz, Consolato Sergi, Jozsef Dudas, Natalie Fischer, Theresa Eberharter, Romed Hoermann, Rudolf Glueckert, Helga Fritsch, Helge Rask-Andersen, Anneliese Schrott-Fischer, Stephan Handschuh
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引用次数: 0

Abstract

Background: Progressive transformation of the otic placode into the functional inner ear during gestational development in humans leads to the acquisition of hearing perception via the cochlea and balance and spatial orientation via the vestibular organ.

Results: Using a correlative approach involving micro-computerized tomography (micro-CT), transmission electron microscopy and histological techniques we were able to examine both the morphological and cellular changes associated with human inner ear development. Such an evaluation allowed for the examination of 3D geometry with high spatial and temporal resolution. In concert with gestational progression and growth of the cochlear duct, an increase in the distance between some of the Crista ampullaris is evident in all the specimens examined from GW12 to GW36. A parallel increase in the distances between the macular organs - fetal utricle and saccule - is also evident across the gestational stages examined. The distances between both the utricle and saccule to the three cristae ampullares also increased across the stages examined. A gradient in hair cell differentiation is apparent from apex to base of the fetal cochlea even at GW14.

Conclusion: We present structural information on human inner ear development across multiple levels of biological organization, including gross-morphology of the inner ear, cellular and subcellular details of hearing and vestibular organs, as well as ultrastructural details in the developing sensory epithelia. This enabled the gathering of detailed information regarding morphometric changes as well in realizing the complex developmental patterns of the human inner ear. We were able to quantify the volumetric and linear aspects of selected gestational inner ear specimens enabling a better understanding of the cellular changes across the fetal gestational timeline. Moreover, these data could serve as a reference for better understanding disorders that arise during inner ear development.

Abstract Image

Abstract Image

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通过相关成像方法研究胎儿期人类内耳发育过程中的生长和细胞模式。
背景:在人类的妊娠发育过程中,耳胎盘逐渐转变为功能性内耳,通过耳蜗获得听觉感知,通过前庭器官获得平衡和空间定向:我们利用微计算机断层扫描(micro-CT)、透射电子显微镜和组织学技术等相关方法,研究了与人类内耳发育相关的形态和细胞变化。通过这种评估方法,我们能够以较高的空间和时间分辨率检查三维几何图形。随着妊娠的进展和耳蜗导管的生长,在从 GW12 到 GW36 的所有样本中,一些耳廓之间的距离明显增加。黄斑器官--胎儿胞果和囊果--之间的距离在各妊娠阶段也明显增加。子宫和小囊到三个嵴安瓿之间的距离也在各个孕期阶段增加。即使在 GW14 期,胎儿耳蜗从顶部到底部的毛细胞分化梯度也很明显:我们展示了人类内耳多层次生物组织发育的结构信息,包括内耳的大体形态、听觉和前庭器官的细胞和亚细胞细节,以及发育中感觉上皮的超微结构细节。这使得我们能够收集到有关形态变化的详细信息,并了解人类内耳复杂的发育模式。我们能够对所选妊娠内耳标本的体积和线性方面进行量化,从而更好地了解胎儿妊娠期的细胞变化。此外,这些数据还可作为参考,以便更好地了解内耳发育过程中出现的疾病。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
BMC Developmental Biology
BMC Developmental Biology 生物-发育生物学
自引率
0.00%
发文量
0
审稿时长
>12 weeks
期刊介绍: BMC Developmental Biology is an open access, peer-reviewed journal that considers articles on the development, growth, differentiation and regeneration of multicellular organisms, including molecular, cellular, tissue, organ and whole organism research.
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