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Characterization of the development of the mouse cochlear epithelium at the single cell level.在单细胞水平上对小鼠耳蜗上皮发育的特征描述。
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Neurogenesis in the inner ear: the zebrafish statoacoustic ganglion provides new neurons from a Neurod/Nestin-positive progenitor pool well into adulthood.内耳中的神经发生:斑马鱼的椭圆囊神经节在成年期从一个具有 Neurod/Nestin 阳性的祖细胞库中提供新的神经元。
Development. 2020 Apr 10;147(7):dev176750. doi: 10.1242/dev.176750.
4
Multiple supporting cell subtypes are capable of spontaneous hair cell regeneration in the neonatal mouse cochlea.在新生小鼠耳蜗中,多种支持细胞亚型能够自发地进行毛细胞再生。
Development. 2019 Feb 15;146(4):dev171009. doi: 10.1242/dev.171009.
5
Nestin-expressing progenitor cells: function, identity and therapeutic implications.巢蛋白表达祖细胞:功能、特性及治疗意义。
Cell Mol Life Sci. 2018 Jun;75(12):2177-2195. doi: 10.1007/s00018-018-2794-z. Epub 2018 Mar 14.
6
Identification of mouse cochlear progenitors that develop hair and supporting cells in the organ of Corti.鉴定在耳蜗器官中发育为毛细胞和支持细胞的小鼠耳蜗祖细胞。
Nat Commun. 2017 May 11;8:15046. doi: 10.1038/ncomms15046.
7
Evaluation of Nestin Expression in the Developing and Adult Mouse Inner Ear.发育中和成年小鼠内耳中巢蛋白表达的评估。
Stem Cells Dev. 2016 Oct 1;25(19):1419-32. doi: 10.1089/scd.2016.0176. Epub 2016 Sep 7.
8
Spontaneous regeneration of cochlear supporting cells after neonatal ablation ensures hearing in the adult mouse.新生小鼠耳蜗支持细胞切除后自发再生可确保成年小鼠的听力。
Proc Natl Acad Sci U S A. 2014 Nov 25;111(47):16919-24. doi: 10.1073/pnas.1408064111. Epub 2014 Nov 10.
9
Lgr5-positive supporting cells generate new hair cells in the postnatal cochlea.Lgr5 阳性支持细胞在后生耳蜗中产生新的毛细胞。
Stem Cell Reports. 2014 Feb 20;2(3):311-22. doi: 10.1016/j.stemcr.2014.01.008. eCollection 2014 Mar 11.
10
Spontaneous hair cell regeneration in the neonatal mouse cochlea in vivo.体内新生鼠耳蜗内毛细胞的自发再生。
Development. 2014 Feb;141(4):816-29. doi: 10.1242/dev.103036.

巢蛋白表达细胞在哺乳动物内耳中具有有丝分裂活性。

Nestin-expressing cells are mitotically active in the mammalian inner ear.

机构信息

University of Colorado School of Medicine, Dept of Otolaryngology - Head and Neck Surgery, 12631 E 17th Avenue, Aurora, CO 80045, USA.

Kumamoto University Graduate School of Medicine, Dept of Otolaryngology - Head and Neck Surgery, Kumamoto University Graduate School of Medicine, Kumamoto City, Japan.

出版信息

Hear Res. 2024 Mar 1;443:108962. doi: 10.1016/j.heares.2024.108962. Epub 2024 Jan 23.

DOI:10.1016/j.heares.2024.108962
PMID:38295585
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC10922748/
Abstract

Nestin expression is associated with pluripotency. Growing evidence suggests nestin is involved in hair cell development. The objective of this study was to investigate the morphology and role of nestin-expressing cells residing in the early postnatal murine inner ear. A lineage-tracing nestin reporter mouse line was used to further characterize these cells. Their cochleae and vestibular organs were immunostained and whole-mounted for cell counting. We found Nestin-expressing cells present in low numbers throughout the inner ear. Three morphotypes were observed: bipolar, unipolar, and globular. Mitotic activity was noted in nestin-expressing cells in the cochlea, utricle, saccule, and crista. Nestin-expressing cell characteristics were then observed after hair cell ablation in two mouse models. First, a reporter model demonstrated nestin expression in a significantly higher proportion of hair cells after hair cell ablation than in control cochleae. However, in a lineage tracing nestin reporter mouse, none of the new hair cells which repopulated the organ of Corti after hair cell ablation expressed nestin, nor did the nestin-expressing cells change in morphotype. In conclusion, Nestin-expressing cells were identified in the cochlea and vestibular organs. After hair cell ablation, nestin-expressing cells did not react to the insult. However, a small number of nestin-expressing cells in all inner ear tissues exhibited mitotic activity, supporting progenitor cell potential, though perhaps not involved in hair cell regeneration.

摘要

巢蛋白表达与多能性有关。越来越多的证据表明,巢蛋白参与毛细胞的发育。本研究的目的是研究早期出生后小鼠内耳中巢蛋白表达细胞的形态和功能。使用谱系追踪巢蛋白报告小鼠系进一步表征这些细胞。对其耳蜗和前庭器官进行免疫染色和全器官铺片以进行细胞计数。我们发现,在内耳中巢蛋白表达细胞数量较少。观察到三种形态类型:双极、单极和球形。在耳蜗、前庭、球囊和嵴中有丝分裂活性。然后在两种小鼠模型中观察到毛细胞消融后巢蛋白表达细胞的特征。首先,报告模型显示,在毛细胞消融后,巢蛋白表达细胞的比例明显高于对照耳蜗。然而,在巢蛋白报告基因小鼠中,没有新的毛细胞在毛细胞消融后重新填充柯蒂器表达巢蛋白,也没有观察到巢蛋白表达细胞的形态发生变化。总之,在内耳耳蜗和前庭器官中鉴定出巢蛋白表达细胞。在毛细胞消融后,巢蛋白表达细胞不会对损伤做出反应。然而,所有内耳组织中的少数巢蛋白表达细胞表现出有丝分裂活性,支持祖细胞潜能,尽管可能不参与毛细胞再生。