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本文引用的文献

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Distribution of vimentin in the developing chick taste bud during the perihatching period.孵化期雏鸡味蕾中波形蛋白的分布
Cell Mol Biol (Noisy-le-grand). 1999 May;45(3):303-16.
2
Distribution of cytokeratin filaments and vimentin in developing human taste buds.细胞角蛋白丝和波形蛋白在发育中的人类味蕾中的分布。
Anat Embryol (Berl). 1999 Apr;199(4):291-9. doi: 10.1007/s004290050229.
3
Vertebrate taste-bud development: are salamanders the model?脊椎动物味蕾的发育:蝾螈是模型吗?
Trends Neurosci. 1998 Aug;21(8):337; author reply 338. doi: 10.1016/s0166-2236(98)01255-7.
4
Loss of epithelial differentiation markers and acquisition of vimentin expression after xenograft with laminin-1 enhance migratory and invasive abilities of human colon cancer cells LoVo C5.用层粘连蛋白-1进行异种移植后,上皮分化标志物的丧失和波形蛋白表达的获得增强了人结肠癌细胞LoVo C5的迁移和侵袭能力。
Differentiation. 1998 Jul;63(3):141-50. doi: 10.1046/j.1432-0436.1998.6330141.x.
5
Immunohistochemical distribution of CD44 and some of its isoforms during human taste bud development.人类味蕾发育过程中CD44及其某些异构体的免疫组织化学分布
Histochem Cell Biol. 1998 Jul;110(1):95-103. doi: 10.1007/s004180050270.
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The distribution and origin of keratin 20-containing taste buds in rat and human.大鼠和人类中含角蛋白20的味蕾的分布与起源
Differentiation. 1996 Dec;61(2):121-7. doi: 10.1046/j.1432-0436.1996.6120121.x.
7
Embryonic and early fetal development of human taste buds: a transmission electron microscopical study.人类味蕾的胚胎期和胎儿早期发育:透射电子显微镜研究
Anat Rec. 1996 Dec;246(4):507-23. doi: 10.1002/(SICI)1097-0185(199612)246:4<507::AID-AR10>3.0.CO;2-S.
8
Olfactory neuronal cell lines generated by retroviral insertion of the n-myc oncogene display different developmental phenotypes.通过逆转录病毒插入n-myc癌基因产生的嗅觉神经元细胞系表现出不同的发育表型。
J Neurosci Res. 1996 Aug 1;45(3):237-47. doi: 10.1002/(SICI)1097-4547(19960801)45:3<237::AID-JNR5>3.0.CO;2-E.
9
Differential expression of N-CAM, vimentin and MAP1B during initial pathfinding of olfactory receptor neurons in the mouse embryo.小鼠胚胎中嗅觉受体神经元初始路径寻找过程中N-CAM、波形蛋白和微管相关蛋白1B的差异表达。
Anat Embryol (Berl). 1995 Sep;192(3):211-20. doi: 10.1007/BF00184745.
10
Embryonic taste buds develop in the absence of innervation.胚胎期味蕾在没有神经支配的情况下发育。
Development. 1996 Apr;122(4):1103-11. doi: 10.1242/dev.122.4.1103.

味蕾指纹识别:中间丝及其在味蕾形成中的意义

Fingerprinting taste buds: intermediate filaments and their implication for taste bud formation.

作者信息

Witt M, Reutter K, Ganchrow D, Ganchrow J R

机构信息

Department of Anatomy, Technical University of Dresden, Germany.

出版信息

Philos Trans R Soc Lond B Biol Sci. 2000 Sep 29;355(1401):1233-7. doi: 10.1098/rstb.2000.0674.

DOI:10.1098/rstb.2000.0674
PMID:11079405
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC1692836/
Abstract

Intermediate filaments in taste organs of terrestrial (human and chick) as well as aquatic (Xenopus laevis) species were detected using immunohistochemistry and electron microscopy. During development, the potential importance of the interface between the taste bud primordium and non-gustatory adjacent tissues is evidenced by the distinct immunoreactivity of a subpopulation of taste bud cells for cytokeratins and vimentin. In human foetuses, the selective molecular marker for taste bud primordia, cytokeratin 20, is not detectable prior to the ingrowth of nerve fibres into the epithelium, which supports the hypothesis that nerve fibres are necessary for initiating taste bud development. Another intermediate filament protein, vimentin, occurs in derivatives of mesoderm, but usually not in epithelium. In humans, vimentin immunoreactivity is expressed mainly in border (marginal) epithelial cells of taste bud primordia, while in chick, vimentin expression occurs in most taste bud cells, whereas non-gustatory epithelium is vimentin immunonegative. Our chick data suggest a relationship between the degree of vimentin expression and taste bud cell proliferation especially during the perihatching period. It is suggested that surrounding epithelial cells (human) and mesenchymal cells (chick) may be contributing sources of developing taste buds. The dense perinuclear network of intermediate filaments especially in dark (i.e. non-sensory) taste disc cells of Xenopus indicates that vimentin filaments also might be associated with cells of non-gustatory function. These results indicate that the mechanisms of taste bud differentiation from source tissues may differ among vertebrates of different taxa.

摘要

利用免疫组织化学和电子显微镜技术,检测了陆生(人类和鸡)以及水生(非洲爪蟾)物种味觉器官中的中间丝。在发育过程中,味蕾原基与相邻非味觉组织之间界面的潜在重要性,通过味蕾细胞亚群对细胞角蛋白和波形蛋白的明显免疫反应得以证明。在人类胎儿中,在神经纤维长入上皮之前,味蕾原基的选择性分子标记物细胞角蛋白20无法检测到,这支持了神经纤维是启动味蕾发育所必需的这一假说。另一种中间丝蛋白波形蛋白存在于中胚层衍生物中,但通常不存在于上皮中。在人类中,波形蛋白免疫反应主要在味蕾原基的边缘上皮细胞中表达,而在鸡中,波形蛋白表达出现在大多数味蕾细胞中,而非味觉上皮则对波形蛋白呈免疫阴性。我们关于鸡的数据表明,波形蛋白表达程度与味蕾细胞增殖之间存在关联,尤其是在孵化期前后。有人提出,周围的上皮细胞(人类)和间充质细胞(鸡)可能是发育中味蕾的贡献来源。非洲爪蟾的深色(即非感觉性)味盘细胞中,中间丝的致密核周网络尤其明显,这表明波形蛋白丝也可能与非味觉功能的细胞相关。这些结果表明,不同分类群的脊椎动物中,味蕾从源组织分化的机制可能有所不同。