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发育中的人类小唾液腺:转化生长因子-β亚型表达与腺泡成熟细胞骨架标志物之间的形态学平行关系

Developing human minor salivary glands: morphological parallel relation between the expression of TGF-beta isoforms and cytoskeletal markers of glandular maturation.

作者信息

Lourenço Silvia Vanessa, Uyekita Sabrina Hitomi, Lima Dirce Mary Correia, Soares Fernando Augusto

机构信息

Department of General Pathology, Dental School, University of São Paulo, São Paulo, Brazil.

出版信息

Virchows Arch. 2008 Apr;452(4):427-34. doi: 10.1007/s00428-007-0552-y. Epub 2007 Dec 14.

Abstract

Morphogenesis of salivary glands involves complex coordinated events. Synchronisation between cell proliferation, polarisation and differentiation, which are dependent on epithelial-mesenchymal interactions and on the microenvironment, is a requirement. Growth factors mediate many of these orchestrated biological processes and transforming growth factor-beta (TGF-beta) appear to be relevant. Using immunohistochemistry and immunofluorescence, we have mapped the distribution of TGF-beta 1, 2 and 3 and compared it with the expression of maturation markers in human salivary glands obtained from foetuses ranging from weeks 4 to 24 of gestation. TGF-beta 1 first appeared during canalisation stage in the surrounding mesenchyme and, in the more differentiated stages, was expressed in the cytoplasm of acinar cells throughout the adult gland. TGF-beta 2 was detected since the bud stage of the salivary gland. Its expression was observed in ductal cells and increased along gland differentiation, TGF-beta 3 was detected from the canalisation stage of the salivary gland, being weakly expressed on ductal cells, and it was the only factor detected on myoepithelial cells. The data suggest that TGF-beta have a role to play in salivary gland development and differentiation.

摘要

唾液腺的形态发生涉及复杂的协调事件。细胞增殖、极化和分化之间的同步是必要的,而这些过程依赖于上皮-间充质相互作用和微环境。生长因子介导许多这些精心编排的生物学过程,转化生长因子-β(TGF-β)似乎与之相关。我们使用免疫组织化学和免疫荧光技术,绘制了TGF-β1、2和3的分布图,并将其与从妊娠4周至24周的胎儿获取的人类唾液腺中成熟标志物的表达进行了比较。TGF-β1最早出现在导管形成阶段的周围间充质中,在更分化的阶段,在整个成年腺体的腺泡细胞胞质中表达。TGF-β2在唾液腺的芽期就被检测到。其表达在导管细胞中观察到,并随着腺体分化而增加。TGF-β3从唾液腺的导管形成阶段被检测到,在导管细胞上弱表达,并且它是在肌上皮细胞上检测到的唯一因子。数据表明TGF-β在唾液腺发育和分化中发挥作用。

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