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首页> 外文期刊>Chemical Senses >Characterization and Turnover of CD73/IP3R3-positive Microvillar Cells in the Adult Mouse Olfactory Epithelium
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Characterization and Turnover of CD73/IP3R3-positive Microvillar Cells in the Adult Mouse Olfactory Epithelium

机译:成年小鼠嗅上皮细胞中CD73 / IP3R3阳性微绒毛细胞的表征和转换。

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The main olfactory epithelium consists of 4 major cell types: sensory neurons, supporting cells, microvillar cells, and basal progenitor cells. Several populations of microvillar olfactory cells have been described, whose properties are not yet fully understood. In this study, we aimed to clarify the classification of microvillar cells by introducing a specific marker, CD73. Furthermore, we investigated the turnover of CD73-microvillar cells during adult life. Using direct and indirect immunofluorescence in adult main olfactory epithelium, we first demonstrate that ecto-5'-nucleotidase (CD73) is a reliable marker for microvillar cells reported previously to express phospholipase C β2 (PLC β2) along with type 3 IP3 receptors (IP3R3) and transient receptor potential channels 6 (TRPC6), as well as for cells labeled by transgenic expression of tauGFP driven by the IP3R3 promoter. The ubiquitous CD73 immunoreactivity in the microvilli of these 2 cell populations indicates that they correspond to the same cell type (CD73-microvillar cell), endowed with a signal transduction cascade mobilizing Ca++ from intracellular stores. These microvillar cells respond to odors, possess a basal process, and do not degenerate after bulbectomy, suggesting that they contribute to cellular homeostasis in the olfactory epithelium. Next, we examined whether CD73-microvillar cells undergo turnover in the adult olfactory epithelium. By combining CD73 immunofluorescence and BrdU pulse labeling, we show delayed BrdU incorporation in a small fraction of CD73-positive microvillar cells, which persists for several weeks after BrdU administration. These findings indicate that CD73-microvillar cells likely differentiate from proliferating progenitor cells and have a slow turnover despite their apical position in the olfactory epithelium. These combined properties are unique among olfactory cells, in line with the possibility that they might regulate cellular homeostasis driven by extracellular ATP and adenosine.
机译:主要的嗅觉上皮细胞包括4种主要的细胞类型:感觉神经元,支持细胞,微绒毛细胞和基底祖细胞。已经描述了数个微绒毛嗅觉细胞群体,其性质尚未完全被理解。在这项研究中,我们旨在通过引入特异性标记CD73来阐明微绒毛细胞的分类。此外,我们调查了成年期间CD73-微绒毛细胞的周转率。我们在成年主嗅上皮中使用直接和间接免疫荧光,我们首先证明ecto-5'-核苷酸酶(CD73)是以前报道过表达磷脂酶Cβ2(PLCβ2)以及3型IP3受体(IP3R3)的微绒毛细胞的可靠标记)和瞬时受体电位通道6(TRPC6),以及由IP3R3启动子驱动的tauGFP转基因表达标记的细胞。这两个细胞群的微绒毛中普遍存在的CD73免疫反应性表明,它们对应于相同的细胞类型(CD73-微绒毛细胞),并具有从细胞内存储中调动Ca ++的信号转导级联。这些微绒毛细胞对气味有反应,具有基础过程,并且在球根切除术后不会退化,表明它们有助于嗅觉上皮细胞的细胞稳态。接下来,我们检查了CD73-微绒毛细胞是否在成年嗅觉上皮细胞中发生更新。通过结合CD73免疫荧光和BrdU脉冲标记,我们显示了在小部分CD73阳性微绒毛细胞中延迟的BrdU掺入,在BrdU施用后持续了数周。这些发现表明,CD73-微绒毛细胞可能与增殖的祖细胞分化,并且尽管其在嗅觉上皮中的顶端位置也具有缓慢的更新。这些组合特性在嗅觉细胞中是独特的,这符合它们可能调节由细胞外ATP和腺苷驱动的细胞稳态的可能性。

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