Wick Nikolaus, Saharinen Pipsa, Saharinen Juha, Gurnhofer Elisabeth, Steiner Carl W, Raab Ingrid, Stokic Dejan, Giovanoli Pietro, Buchsbaum Sabine, Burchard Aurea, Thurner Stefan, Alitalo Kari, Kerjaschki Dontscho
Clinical Institute for Pathology, General Hospital and Medical University of Vienna, Vienna, Austria.
Physiol Genomics. 2007 Jan 17;28(2):179-92. doi: 10.1152/physiolgenomics.00037.2006.
The in vivo functions of lymphatic endothelial cells depend on their microenvironment, which cannot be fully reproduced in vitro. Because of technical limitations, gene expression in uncultured, "ex vivo" lymphatic endothelial cells has not been characterized at the molecular level. We combined tissue micropreparation and direct cell isolation with DNA chip experiments to identify 159 genes differentiating human lymphatic endothelial cells from blood vascular endothelial cells ex vivo. The same analysis performed with cultured primary cells revealed that only 19 genes characteristic for lymphatic endothelium ex vivo retained this property upon culture, while 27 marker genes were newly induced. In addition, a set of panendothelial genes could be recognized. The propagation of lymphatic endothelial cells in culture stimulated transcription of genes associated with cell turnover, basic metabolism, and the cytoskeleton. On the other hand, there was downregulation of genes encoding extracellular matrix components, signaling via transmembrane tyrosine kinase pathways and the chemokine (C-C) ligand 21. Direct ex vivo analysis of the lymphatic endothelial cell transcriptome is helpful for the understanding of the physiology of the lymphatic vascular system and of the pathogenesis of its diseases.
淋巴管内皮细胞的体内功能取决于其微环境,而这种微环境无法在体外完全重现。由于技术限制,未培养的“离体”淋巴管内皮细胞中的基因表达尚未在分子水平上得到表征。我们将组织微量制备和直接细胞分离与DNA芯片实验相结合,以鉴定出159个在离体状态下使人淋巴管内皮细胞区别于血管内皮细胞的基因。对培养的原代细胞进行同样的分析发现,只有19个离体状态下淋巴管内皮细胞特有的基因在培养后仍保持这一特性,而27个标记基因是新诱导产生的。此外,还可以识别出一组泛内皮细胞基因。淋巴管内皮细胞在培养中的增殖刺激了与细胞更新、基础代谢和细胞骨架相关的基因转录。另一方面,编码细胞外基质成分、通过跨膜酪氨酸激酶途径的信号传导以及趋化因子(C-C)配体21的基因表达下调。对淋巴管内皮细胞转录组进行直接离体分析有助于理解淋巴管系统的生理学及其疾病的发病机制。