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4D 模型组织中 A549 细胞的基因表达谱预测肺癌患者预后不良。

Gene expression profile of A549 cells from tissue of 4D model predicts poor prognosis in lung cancer patients.

机构信息

Department of Surgery, The Methodist Hospital Research Institute, Houston, TX.

出版信息

Int J Cancer. 2014 Feb 15;134(4):789-98. doi: 10.1002/ijc.28428. Epub 2013 Sep 3.

DOI:10.1002/ijc.28428
PMID:23934967
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC4070715/
Abstract

The tumor microenvironment plays an important role in regulating cell growth and metastasis. Recently, we developed an ex vivo lung cancer model (four dimensional, 4D) that forms perfusable tumor nodules on a lung matrix that mimics human lung cancer histopathology and protease secretion pattern. We compared the gene expression profile (Human OneArray v5 chip) of A549 cells, a human lung cancer cell line, grown in a petri dish (two-dimensional, 2D), and of the same cells grown in the matrix of our ex vivo model (4D). Furthermore, we obtained gene expression data of A549 cells grown in a petri dish (2D) and matrigel (three-dimensional, 3D) from a previous study and compared the 3D expression profile with that of 4D. Expression array analysis showed 2,954 genes differentially expressed between 2D and 4D. Gene ontology (GO) analysis showed upregulation of several genes associated with extracellular matrix, polarity and cell fate and development. Moreover, expression array analysis of 2D vs. 3D showed 1,006 genes that were most differentially expressed, with only 36 genes (4%) having similar expression patterns as observed between 2D and 4D. Finally, the differential gene expression signature of 4D cells (vs. 2D) correlated significantly with poor survival in patients with lung cancer (n = 1,492), while the expression signature of 3D vs. 2D correlated with better survival in lung cancer patients with lung cancer. As patients with larger tumors have a worse rate of survival, the ex vivo 4D model may be a good mimic of natural progression of tumor growth in lung cancer patients.

摘要

肿瘤微环境在调节细胞生长和转移方面起着重要作用。最近,我们开发了一种体外肺癌模型(四维,4D),该模型在模仿人类肺癌组织病理学和蛋白酶分泌模式的肺基质上形成可灌注的肿瘤结节。我们比较了在培养皿中生长的人肺癌细胞系 A549 细胞的基因表达谱(Human OneArray v5 芯片)与在我们的体外模型基质中生长的相同细胞的基因表达谱(4D)。此外,我们从以前的研究中获得了在培养皿(2D)和 Matrigel(三维,3D)中生长的 A549 细胞的基因表达数据,并将 3D 表达谱与 4D 进行了比较。表达谱分析显示,2D 和 4D 之间有 2954 个基因表达差异。基因本体论(GO)分析显示,几个与细胞外基质、极性和细胞命运和发育相关的基因上调。此外,2D 与 3D 的表达谱分析显示,有 1006 个基因表达差异最大,其中只有 36 个基因(4%)与 2D 和 4D 之间观察到的表达模式相似。最后,4D 细胞(与 2D 相比)的差异基因表达特征与肺癌患者的不良预后显著相关(n=1492),而 3D 与 2D 的表达特征与肺癌患者的更好预后相关。由于肿瘤较大的患者存活率较差,体外 4D 模型可能是肺癌患者肿瘤生长自然进展的良好模拟。

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