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单次与分次辐射后乳腺、前列腺和胶质瘤细胞的基因表达谱分析。

Gene expression profiling of breast, prostate, and glioma cells following single versus fractionated doses of radiation.

作者信息

Tsai Mong-Hsun, Cook John A, Chandramouli Gadisetti V R, DeGraff William, Yan Hailing, Zhao Shuping, Coleman C Norman, Mitchell James B, Chuang Eric Y

机构信息

Radiation Biology, Center for Cancer Research, National Cancer Institute/NIH, Bethesda, MD 20892, USA.

出版信息

Cancer Res. 2007 Apr 15;67(8):3845-52. doi: 10.1158/0008-5472.CAN-06-4250.

Abstract

Studies were conducted to determine whether gene expression profiles following a single dose of radiation would yield equivalent profiles following fractionated radiation in different tumor cell lines. MCF7 (breast), DU145 (prostate), and SF539 (gliosarcoma) cells were exposed to a total radiation dose of 10 Gy administered as a single dose (SD) or by daily multifractions (MF) of 5 x 2 Gy. Following radiation treatment, mRNA was isolated at 1, 4, 10, and 24 h and processed for cDNA microarray analysis. To determine the influence of the tumor microenvironment on gene expression, one cell type (DU145) was evaluated growing as a solid tumor in athymic nude mice for both radiation protocols. Unsupervised hierarchical cluster map analysis showed significant differences in gene expression profiles between SD and MF treatments for cells treated in vitro, with MF yielding a more robust induction compared with SD. Several genes were uniquely up-regulated by MF treatment, including multiple IFN-related genes (STAT1, G1P2, OAS1, OAS3, G1P3, IFITM1) and TGF-beta-associated genes (EGR1, VEGF, THBS1, and TGFB2). DU145 cells grown in vivo exhibited a completely different set of genes induced by both SD and MF compared with the same cells exposed in vitro. The results of the study clearly show distinct differences in the molecular response of cells between SD and MF radiation exposures and show that the tumor microenvironment can significantly influence the pattern of gene expression after radiation exposures.

摘要

开展了多项研究,以确定在不同肿瘤细胞系中,单次辐射后的基因表达谱是否会与分次辐射后的基因表达谱相同。MCF7(乳腺癌)、DU145(前列腺癌)和SF539(胶质肉瘤)细胞接受了10 Gy的总辐射剂量,分别采用单次剂量(SD)或每日多次剂量(MF),每次2 Gy,共5次。辐射处理后,在1、4、10和24小时分离mRNA,并进行cDNA微阵列分析。为了确定肿瘤微环境对基因表达的影响,对一种细胞类型(DU145)在无胸腺裸鼠体内作为实体瘤生长的两种辐射方案进行了评估。无监督层次聚类图分析显示,体外处理的细胞在SD和MF处理之间的基因表达谱存在显著差异,与SD相比,MF诱导作用更强。MF处理独特地上调了几个基因,包括多个干扰素相关基因(STAT1、G1P2、OAS1、OAS3、G1P3、IFITM1)和转化生长因子-β相关基因(EGR1、VEGF、THBS1和TGFB2)。与体外暴露的相同细胞相比,体内生长的DU145细胞在SD和MF处理下诱导出的基因集完全不同。该研究结果清楚地表明,SD和MF辐射暴露后细胞的分子反应存在明显差异,并表明肿瘤微环境可显著影响辐射暴露后的基因表达模式。

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