Sato Kiminori, Chitose Shun-Ichi, Sato Fumihiko, Sato Kiminobu, Ono Takeharu, Umeno Hirohito
Department of Otolaryngology-Head and Neck Surgery Kurume University School of Medicine Kurume Japan.
Laryngoscope Investig Otolaryngol. 2020 Sep 29;5(5):903-910. doi: 10.1002/lio2.470. eCollection 2020 Oct.
There is growing evidence that the cells in the maculae flavae (MFe) are tissue stem cells and the MFe are a stem cell niche of the human vocal fold mucosa. Heterogeneity and hierarchy of tissue stem cells in the MFe of newborn vocal fold were investigated in vivo.
Histologic analysis of the human vocal folds.
Five normal human newborn vocal folds were investigated under transmission electron microscopy and light microscopy.
Cobblestone-like polygonal cells, vocal fold stellate cell-like cells, and fibroblast-like spindle cells were intermingled in the newborn MFe in vivo, indicating that the cells in the MFe had heterogeneity. However, cobblestone-like polygonal cells were predominant. Free ribosomes were well developed in the cytoplasm. The cells in some cases formed gap junctions with each other. The cells in some cases were attached to other cells and formed cell junctions with each other. These findings indicated cells in the newborn maculae flavae possessed features of mesenchymal cells (cells in mesenchyme). Colony-forming-unit-like cell aggregate was observed, indicating the cells in the newborn MFe had stemness. The cobblestone-like polygonal cells expressed SSEA-3 (a human pluripotent stem cell marker), indicating they were at the top of a cellular hierarchy in the stem cell system.
The cells in the MFe of the human newborn vocal fold mucosa had heterogeneity and hierarchy in the stem cell system in vivo. At birth, newborn maculae flavae are ready to start the growth of the vocal fold mucosa as a vibrating tissue.
越来越多的证据表明,杓状会厌襞(MFe)中的细胞是组织干细胞,且MFe是人类声带黏膜的一个干细胞龛。对新生儿声带MFe中组织干细胞的异质性和层级结构进行了体内研究。
对人类声带进行组织学分析。
在透射电子显微镜和光学显微镜下研究了5例正常人类新生儿声带。
在新生儿MFe的体内,鹅卵石样多边形细胞、声带星状细胞样细胞和成纤维细胞样梭形细胞相互混杂,这表明MFe中的细胞具有异质性。然而,鹅卵石样多边形细胞占主导。细胞质中游离核糖体发育良好。在某些情况下,细胞彼此形成缝隙连接。在某些情况下,细胞与其他细胞附着并相互形成细胞连接。这些发现表明新生儿杓状会厌襞中的细胞具有间充质细胞(间充质中的细胞)的特征。观察到集落形成单位样细胞聚集体,这表明新生儿MFe中的细胞具有干性。鹅卵石样多边形细胞表达SSEA - 3(一种人类多能干细胞标志物),表明它们处于干细胞系统细胞层级结构的顶端。
人类新生儿声带黏膜MFe中的细胞在体内干细胞系统中具有异质性和层级结构。出生时,新生儿杓状会厌襞已准备好作为振动组织开始声带黏膜的生长。