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蛋白组学方法研究球体培养系统中骨肉瘤细胞耐药的分子背景。

Proteomic approach toward molecular backgrounds of drug resistance of osteosarcoma cells in spheroid culture system.

机构信息

Division of Pharmacoproteomics, National Cancer Center Research Institute, Tokyo, Japan.

出版信息

Proteomics. 2013 Aug;13(15):2351-60. doi: 10.1002/pmic.201300053. Epub 2013 Jun 28.

Abstract

Chemoresistance is one of the most critical prognostic factors in osteosarcoma, and elucidation of the molecular backgrounds of chemoresistance may lead to better clinical outcomes. Spheroid cells resemble in vivo cells and are considered an in vitro model for the drug discovery. We found that spheroid cells displayed more chemoresistance than conventional monolayer cells across 11 osteosarcoma cell lines. To investigate the molecular mechanisms underlying the resistance to chemotherapy, we examined the proteomic differences between the monolayer and spheroid cells by 2D-DIGE. Of the 4762 protein species observed, we further investigated 435 species with annotated mass spectra in the public proteome database, Genome Medicine Database of Japan Proteomics. Among the 435 protein species, we found that 17 species exhibited expression level differences when the cells formed spheroids in more than five cell lines and four species out of these 17 were associated with spheroid-formation associated resistance to doxorubicin. We confirmed the upregulation of cathepsin D in spheroid cells by western blotting. Cathepsin D has been implicated in chemoresistance of various malignancies but has not previously been implemented in osteosarcoma. Our study suggested that the spheroid system may be a useful tool to reveal the molecular backgrounds of chemoresistance in osteosarcoma.

摘要

耐药性是骨肉瘤最重要的预后因素之一,阐明耐药性的分子背景可能会带来更好的临床结果。球体细胞类似于体内细胞,被认为是药物发现的体外模型。我们发现,在 11 株骨肉瘤细胞系中,球体细胞比传统的单层细胞表现出更强的耐药性。为了研究化疗耐药的分子机制,我们通过 2D-DIGE 检查了单层细胞和球体细胞之间的蛋白质组差异。在观察到的 4762 种蛋白质中,我们进一步研究了在公共蛋白质组数据库日本蛋白质组数据库中具有注释质谱的 435 种蛋白质。在这 435 种蛋白质中,我们发现当细胞在超过 5 种细胞系中形成球体时,有 17 种表现出表达水平的差异,其中 4 种与多柔比星相关的球体形成耐药有关。我们通过 Western blot 确认了球体细胞中组织蛋白酶 D 的上调。组织蛋白酶 D 已被认为与多种恶性肿瘤的耐药性有关,但以前并未在骨肉瘤中实施。我们的研究表明,球体系统可能是揭示骨肉瘤化疗耐药分子背景的有用工具。

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