Tectorial membrane changes in hypothyroid rats during postnatal development.

M J Pujante, M L Sala, A Angulo
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Abstract

The morphological changes of the tectorial membrane (TM) during the postnatal development (0, 3, 6, 12 and 25 day old) of the organ of Corti were studied by light microscopy in 20 control and hypothyroid rats. Hypothyroidism was induced by daily administration of propylthioruracil (PTU) until the end of lactation. The auditive receptor in the cochlea of the hypothyroid animals shows serious structural alterations compared with those of normal ones: abnormal persistence of Kölliker's organ, immaturity of sensory cells and supporting cells and a specific distortion of the TM. Differences with controls were first observed on the sixth postnatal day of the hypothyroid rats. The inner spiral sulcus was not shaped and the TM was attached to the Kölliker's organ. In older stages (12 and 25 days), Kölliker's organ was still present. The TM acquired a shap hump with an abnormal fibrillar arrangement in its middle part. It was still attached to the outer supporting cells by a remnant of the marginal net. It was suggested that the TM is secreted by the inner spiral limbus and Kölliker's organ. An abnormal persistence of these structures in the hypothyroidism results in a retardation of Corti's organ development. However, this conclusion does not explain the absence of the outer portion of the TM. Our study confirms the hypothesis that the secretion of any components of the marginal zone of TM is made by outer supporting cells which in PTU-treated animals appear very immature and with hypoplasia.

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甲状腺功能减退大鼠出生后发育过程中被膜的变化。
用光镜观察20只正常对照和甲状腺功能减退大鼠出生后(0、3、6、12和25日龄)Corti脏器盖层膜(TM)的形态学变化。每日给予丙硫脲嘧啶(PTU)诱导甲状腺功能减退,直至哺乳期结束。与正常动物相比,甲状腺功能减退动物耳蜗听觉受体表现出严重的结构改变:Kölliker器官的异常持久性,感觉细胞和支持细胞的不成熟以及TM的特异性畸变。在甲状腺功能减退大鼠出生后第6天首次观察到与对照组的差异。内螺旋沟未成形,TM附着在Kölliker的器官上。在较老的阶段(12天和25天),Kölliker的器官仍然存在。颞叶呈不规则驼峰状,中间部分纤维排列异常。它仍然通过边缘网的残余附着在外部支持细胞上。这表明TM是由内螺旋边缘和Kölliker器官分泌的。在甲状腺功能减退症中,这些结构的异常持续导致Corti器官发育迟缓。然而,这一结论并不能解释TM外部部分的缺失。我们的研究证实了一个假设,即TM边缘区任何成分的分泌都是由外部支持细胞产生的,而这些细胞在ptu治疗的动物中显得非常不成熟和发育不全。
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