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Involvement of programmed cell death in morphogenesis of the vertebrate inner ear.

机译:程序性细胞死亡参与脊椎动物内耳的形态发生。

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An outstanding challenge in developmental biology is to reveal the mechanisms underlying the morphogenesis of complex organs. A striking example is the developing inner ear of the vertebrate, which acquires a precise three-dimensional arrangement of its constituent epithelial cells to form three semicircular canals, a central vestibule and a coiled cochlea (in mammals). In generating a semicircular canal, epithelial cells seem to 'disappear' from the center of each canal. This phenomenon has been variously explained as (i) transdifferentiation of epithelium into mesenchyme, (ii) absorption of cells into the expanding canal or (iii) programmed cell death. In this study, an in situ DNA-end labeling technique (the TUNEL protocol) was used to map regions of cell death during inner ear morphogenesis in the chicken embryo from embryonic days 3.5-10. Regions of cell death previously identified in vertebrate ears have been confirmed, including the ventromedial otic vesicle, the base of the endolymphatic duct and the fusion plates of the semicircular canals. New regions of cell death are also described in and around the sensory organs. Reducing normal death using retrovirus-mediated overexpression of human bcl-2 causes abnormalities in ear morphogenesis: hollowing of the center of each canal is either delayed or fails entirely. These data provide new evidence to explain the role of cell death in morphogenesis of the semicircular canals.
机译:发育生物学中的一项突出挑战是揭示复杂器官形态发生的机制。一个显着的例子是脊椎动物的内耳发育,它在其组成上皮细胞上获得了精确的三维排列,从而形成了三个半圆管,中央前庭和盘绕的耳蜗(在哺乳动物中)。在生成半圆形管时,上皮细胞似乎从每个管的中心“消失”。这种现象已经被不同地解释为(i)上皮转分化为间充质,(ii)细胞吸收到扩张管中或(iii)程序性细胞死亡。在这项研究中,采用原位DNA末端标记技术(TUNEL协议)来绘制鸡胚从3.5-10天开始的内耳形态发生过程中细胞死亡的区域图。已经确认了先前在脊椎动物的耳朵中发现的细胞死亡区域,包括腹侧耳囊,内淋巴管的基底和半规管的融合板。在感觉器官中和周围还描述了细胞死亡的新区域。使用逆转录病毒介导的人类bcl-2过度表达减少正常死亡会导致耳朵形态发生异常:每个管中心的空洞被延迟或完全衰竭。这些数据提供了新的证据来解释细胞死亡在半规管形态发生中的作用。

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