Sandberg Rickard, Ernberg Ingemar
Microbiology and Tumor Biology Center (MTC), Karolinska Institutet, S-171 77 Stockholm, Sweden.
Genome Biol. 2005;6(8):R65. doi: 10.1186/gb-2005-6-8-r65. Epub 2005 Jul 27.
Cell lines as model systems of tumors and tissues are essential in molecular biology, although they only approximate the properties of in vivo cells in tissues. Cell lines have been selected under in vitro conditions for a long period of time, affecting many specific cellular pathways and processes.
To identify the transcriptional changes caused by long term in vitro selection, we performed a gene-expression meta-analysis and compared 60 tumor cell lines (of nine tissue origins) to 135 human tissue and 176 tumor tissue samples. Using significance analysis of microarrays we demonstrated that cell lines showed statistically significant differential expression of approximately 30% of the approximately 7,000 genes investigated compared to the tissues. Most of the differences were associated with the higher proliferation rate and the disrupted tissue organization in vitro. Thus, genes involved in cell-cycle progression, macromolecule processing and turnover, and energy metabolism were upregulated in cell lines, whereas cell adhesion molecules and membrane signaling proteins were downregulated.
Detailed molecular understanding of how cells adapt to the in vitro environment is important, as it will both increase our understanding of tissue organization and result in a refined molecular portrait of proliferation. It will further indicate when to use immortalized cell lines, or when it is necessary to instead use three-dimensional cultures, primary cell cultures or tissue biopsies.
细胞系作为肿瘤和组织的模型系统在分子生物学中至关重要,尽管它们只是近似于体内组织细胞的特性。细胞系在体外条件下经过长时间筛选,影响了许多特定的细胞途径和过程。
为了确定长期体外筛选引起的转录变化,我们进行了基因表达荟萃分析,并将60个肿瘤细胞系(来自9种组织来源)与135个人体组织和176个肿瘤组织样本进行比较。使用微阵列显著性分析,我们证明与组织相比,细胞系在约7000个研究基因中约30%的基因表现出具有统计学意义的差异表达。大多数差异与体外较高的增殖率和组织结构破坏有关。因此,参与细胞周期进程、大分子加工和周转以及能量代谢的基因在细胞系中上调,而细胞粘附分子和膜信号蛋白则下调。
详细了解细胞如何适应体外环境的分子机制很重要,因为这将增进我们对组织结构的理解,并得出增殖的精细分子图谱。这还将进一步表明何时使用永生化细胞系,或何时有必要改用三维培养、原代细胞培养或组织活检。