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对从高转移性细胞系中分离出的前列腺癌干细胞进行基因组分析。

Genomic analysis of prostate cancer stem cells isolated from a highly metastatic cell line.

作者信息

Rowehl Rebecca A, Crawford Howard, Dufour Antoine, Ju Jingfang, Botchkina Galina I

机构信息

Department of Microbiology, Cell Culture and Hybridoma Facility, 21702, Stony Brook University, NY, USA.

出版信息

Cancer Genomics Proteomics. 2008 Nov-Dec;5(6):301-10.

Abstract

BACKGROUND

Tumor-initiating or cancer stem cells (CSCs) were recently isolated from all major human cancers, including prostate cancer. However, the extreme heterogeneity of tumor cells in terms of biological behavior and gene expression patterns and difficulties isolating a pure population of CSCs from tumor tissues significantly impede a comparative analysis of CSCs.

MATERIALS AND METHODS

Different phenotypic populations were isolated from a metastatic derivative of PC-3 cell line, PC3-MM2, and tested for their ability to form tumors in NOD/SCID mice and floating spheroids in 3D culture systems.

RESULTS

All tested cell lines possessed minor populations of cells with highest expression of CD133, CD44 and CD166, whereas the vast majority of cells were CD133-negative. Several experimental approaches promoted a higher proportion of CD133-positive cells with increased in vivo tumorigenicity and the ability to produce floating spheres. Genome-wide microarray analysis (Affymetrix; DAVID) of CSC-enriched versus CSC-depleted cell populations revealed 213 genes with 10-100 fold increased activity out of 8994 differentially expressed ones and 87 genes with 5-50 fold decreased activity.

CONCLUSIONS

The proposed in vitro prostate CSC model allows for reliable isolation and propagation of highly tumorigenic cells. This study may contribute to the identification of novel targets for CSC-targeted prostate cancer treatment.

摘要

背景

肿瘤起始细胞或癌症干细胞(CSCs)最近已从包括前列腺癌在内的所有主要人类癌症中分离出来。然而,肿瘤细胞在生物学行为和基因表达模式方面的极端异质性,以及从肿瘤组织中分离出纯CSC群体的困难,严重阻碍了对CSCs的比较分析。

材料与方法

从PC-3细胞系的转移衍生物PC3-MM2中分离出不同表型群体,并在NOD/SCID小鼠中测试其形成肿瘤的能力以及在三维培养系统中形成悬浮球体的能力。

结果

所有测试的细胞系都有少量细胞高表达CD133、CD44和CD166,而绝大多数细胞为CD133阴性。几种实验方法促进了更高比例的CD133阳性细胞,其体内致瘤性增加且产生悬浮球体的能力增强。对富含CSC与缺乏CSC的细胞群体进行全基因组微阵列分析(Affymetrix;DAVID),发现在8994个差异表达基因中,有213个基因的活性增加了10至100倍,87个基因的活性降低了5至50倍。

结论

所提出的体外前列腺CSC模型能够可靠地分离和扩增高致瘤性细胞。本研究可能有助于确定针对CSC的前列腺癌治疗的新靶点。

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