Fermin C D, Martin D S
Tulane University School of Medicine, Department of Pathology & Laboratory Medicine, New Orleans, LA 70112-2699, USA.
Cell Mol Biol (Noisy-le-grand). 1995 Mar;41(2):213-25.
We evaluated anti-S100 beta expression in the chick (Gallus domesticus) inner ear and determined that: 1) the monomer anti-S100 beta is expressed differentially in the vestibular and auditory perikarya; 2) expression of S100 beta in the afferent nerve terminals is time-related to synapse and myelin formation; 3) the expression of the dimer anti-S100 alpha alpha beta beta and monomer anti-S100 beta overlaps in most inner ear cell types. Most S100 alpha alpha beta beta positive cells express S100 beta, but S100 beta positive cells do not always express S100 alpha alpha beta beta. 4) the expression of S100 beta is diffused over the perikaryal cytoplasm and nuclei of the acoustic ganglia but is concentrated over the nuclei of the vestibular perikarya. 6) S100 beta is expressed in secretory cells, and it is co-localized with GABA in sensory cells. 7) Color thresholding objective quantitation indicates that the amount of S100 beta was higher (mean 22, SD +/- 4) at E19 than at E9 (mean 34, SD +/- 3) in afferent axons. 8) Moreover, S100 beta was unchanged between E11-E19 in the perikaryal cytoplasm, but did change over the nuclei. At E9, 74%, and at E21, 5% of vestibular perikarya were positive. The data suggest that S100 beta may be physically associated with neuronal and ionic controlling cells of the vertebrate inner ear, where it could provide a dual ionic and neurotrophic modulatory function.
我们评估了鸡(家鸡)内耳中抗S100β的表达,并确定:1)单体抗S100β在前庭和听觉核周体中差异表达;2)S100β在传入神经末梢的表达与突触和髓鞘形成时间相关;3)二聚体抗S100ααββ和单体抗S100β在大多数内耳细胞类型中的表达重叠。大多数S100ααββ阳性细胞表达S100β,但S100β阳性细胞并不总是表达S100ααββ。4)S100β的表达弥散于听神经节的核周细胞质和细胞核上,但集中于前庭核周体的细胞核上。6)S100β在分泌细胞中表达,且在感觉细胞中与GABA共定位。7)颜色阈值客观定量表明,传入轴突中S100β的量在胚胎第19天(平均值22,标准差±4)高于胚胎第9天(平均值34,标准差±3)。8)此外,S100β在核周细胞质中在胚胎第11天至第19天之间无变化,但在细胞核上有变化。在胚胎第9天,74%的前庭核周体呈阳性,在胚胎第21天,5%呈阳性。数据表明,S100β可能与脊椎动物内耳的神经元和离子控制细胞存在物理关联,在那里它可能发挥双重离子和神经营养调节功能。