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一种植物源蛋白能否增强干细胞在脑癌中的抗癌作用?

Could a plant derived protein potentiate the anticancer effects of a stem cell in brain cancer?

作者信息

Bonturi Camila Ramalho, Motaln Helena, Silva Mariana Cristina Cabral, Salu Bruno Ramos, de Brito Marlon Vilela, de Andrade Luz Cost Luciana, Torquato Heron Fernandes Vieira, Nunes Natalia Neto Dos Santos, Paredes-Gamero Edgar Julian, Turnšek Tamara Lah, Oliva Maria Luiza Vilela

机构信息

Biochemistry Department, Federal University of São Paulo, 04044-020, São Paulo - SP, Brazil.

Genetic Toxicology and Cancer Biology Department, National Institute of Biology, 1000, Ljubljana, Slovenia.

出版信息

Oncotarget. 2018 Apr 20;9(30):21296-21312. doi: 10.18632/oncotarget.25090.

Abstract

Glioblastoma is the most aggressive brain tumor with poor overall survival bellow 2 years. The natural compounds with anti-cancer properties, are thus gaining attention for possible adjuvant GBM treatment. In various cancer models Trypsin Inhibitor (EcTI) proved to have anti-cancer effects. Here, we investigated the EcTI effects on GBM U87 cells and on mesenchymal stem cells (MSC) compared to their direct coculture (MSC/U87). MSC are present in tumor stroma, modulating GBM cells phenotype, and also represent potential drug delivery vehicle due to their tumor tropism. We showed that in p53-wild type U87 cells, metabolic activity was less affected by EcTI as in MSC monocuture, but the metabolic rate of mixed coculture was significantly reduced at lower EcTI concentration. Under coculture condition, EcTI potentiated MSC induced cell cycle arrest, possible due to highly increased p53, p21 and lower D1 expression, but there was no effect on apoptosis. Accordingly, in the coculture EcTI also enhanced Ca signalling mediated bradykinin receptor 2, being associated with nitric oxide release that highly impaired proliferation and invasion. The mechanism did not seem to involve changes in cell adhesion but rather it down-regulated the β integrin signaling with associated p-FAK in U87 cells, both supporting inhibition of invasion. Finally, some cytokines were down-regulated, indicating that EcTI inhibition of signalling might be mediated by cytokines. In conclusion, these results indicate that in cocultured MSC/U87 cells EcTI impairs the metabolic activity, proliferation, and reduced invasion, possibly associated with observed cytokines secretion. In this context, we confirmed that the plant derived protein potentiated the anticancer effects, induced by MSC, as represented by GBM U87 cell line.

摘要

胶质母细胞瘤是最具侵袭性的脑肿瘤,总体生存率较差,低于2年。因此,具有抗癌特性的天然化合物因可能作为胶质母细胞瘤辅助治疗而受到关注。在各种癌症模型中,胰蛋白酶抑制剂(EcTI)已被证明具有抗癌作用。在此,我们研究了EcTI对胶质母细胞瘤U87细胞和间充质干细胞(MSC)的影响,并将其与直接共培养(MSC/U87)进行了比较。MSC存在于肿瘤基质中,调节胶质母细胞瘤细胞表型,并且由于其肿瘤嗜性,还代表潜在的药物递送载体。我们发现,在p53野生型U87细胞中,EcTI对代谢活性的影响不如在MSC单培养中明显,但在较低EcTI浓度下,混合共培养的代谢率显著降低。在共培养条件下,EcTI增强了MSC诱导的细胞周期停滞,这可能是由于p53、p21高度增加和D1表达降低所致,但对细胞凋亡没有影响。因此,在共培养中,EcTI还增强了缓激肽受体2介导的钙信号,这与一氧化氮释放有关,一氧化氮释放严重损害了增殖和侵袭。该机制似乎不涉及细胞粘附的变化,而是下调了U87细胞中与p-FAK相关的β整合素信号,两者均支持对侵袭的抑制。最后,一些细胞因子被下调,表明EcTI对信号的抑制可能由细胞因子介导。总之,这些结果表明,在共培养的MSC/U87细胞中,EcTI损害代谢活性、增殖并减少侵袭,这可能与观察到的细胞因子分泌有关。在这种情况下,我们证实了这种植物来源的蛋白质增强了由MSC诱导的抗癌作用,以胶质母细胞瘤U87细胞系为代表。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/4241/5940364/8dffa7afb940/oncotarget-09-21296-g001.jpg

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