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[应用cDNA微阵列技术筛选乳腺癌阿霉素耐药相关基因的差异表达]

[Screening the differential expression of adriamycin-resistance related genes of breast cancer by cDNA microarray].

作者信息

Peng Hao, Yang Hua-Wei, Song Li-Wei, Zhou Zheng

机构信息

Department of General Surgery Oncology, General Coal Hospital, Beijing 100028, China.

出版信息

Zhonghua Yi Xue Za Zhi. 2009 Jul 7;89(25):1745-8.

Abstract

OBJECTIVE

To study the differential gene expression of adriamycin-resistance of breast cancer cell line MCF-7/ADR as compared with its parent cell MCF-7 and screen the related genes.

METHODS

The in vitro inhibitory rate of MCF-7/ADR and MCF-7 cell lines to ADM (adriamycin) was examined by MIT assay. Then a cDNA microarray representing 14,755 genes was used to analyze the expression profiles of these two breast cancer cell lines.

RESULTS

The inhibitory rate of MCF-7/ ADR to ADM was lower than that of MCF-7(P <0.05)and the drug resistance to ADR of MCF-7/ADR was stronger than that of MCF-7. There were 2374 differential expression genes in MCF-7/adr and MCF-7 cell lines, of which 1099 genes upregulated with 99 genes 10-fold upregulated and 1275 genes downregulated with 71 genes 10-fold downregulated. The important upregulated genes were Bcl-2, GSTP1, c-myc, MMP-1 and NNMT while those downregulated ones p53, p21, p27 and CYPIA1.

CONCLUSION

Drug resistance of breast cancer is a complicated process involving the expression of many upregulated or downregulated genes. The application of gene chip in screening drug-resistant genes may be a new approach for selecting the optimal chemotherapeutic regimens. [Key words]

摘要

目的

研究乳腺癌细胞系MCF-7/ADR与其亲本细胞MCF-7在阿霉素耐药方面的差异基因表达,并筛选相关基因。

方法

采用MTT法检测MCF-7/ADR和MCF-7细胞系对阿霉素(ADM)的体外抑制率。然后使用代表14755个基因的cDNA微阵列分析这两种乳腺癌细胞系的表达谱。

结果

MCF-7/ADR对ADM的抑制率低于MCF-7(P<0.05),MCF-7/ADR对ADR的耐药性强于MCF-7。MCF-7/adr和MCF-7细胞系中有2374个差异表达基因,其中1099个基因上调,99个基因上调10倍,1275个基因下调,71个基因下调10倍。重要的上调基因有Bcl-2、GSTP1、c-myc、MMP-1和NNMT,而下调基因有p53、p21、p27和CYPIA1。

结论

乳腺癌耐药是一个复杂的过程,涉及许多上调或下调基因的表达。基因芯片在筛选耐药基因中的应用可能是选择最佳化疗方案的一种新方法。[关键词]

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