首页> 美国卫生研究院文献>Evidence-based Complementary and Alternative Medicine : eCAM >BlueBerry Isolate Pterostilbene Functions as a Potential Anticancer Stem Cell Agent in Suppressing Irradiation-Mediated Enrichment of Hepatoma Stem Cells
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BlueBerry Isolate Pterostilbene Functions as a Potential Anticancer Stem Cell Agent in Suppressing Irradiation-Mediated Enrichment of Hepatoma Stem Cells

机译:BlueBerry分离物蕨类植物在抑制辐射介导的肝癌干细胞富集中起潜在的抗癌干细胞作用。

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摘要

For many malignancies, radiation therapy remains the second option only to surgery in terms of its curative potential. However, radiation-induced tumor cell death is limited by a number of factors, including the adverse response of the tumor microenvironment to the treatment and either intrinsic or acquired mechanisms of evasive resistance, and the existence of cancer stem cells (CSCs). In this study, we demonstrated that using different doses of irradiation led to the enrichment of CD133+ Mahlavu cells using flow cytometric method. Subsequently, CD133+ Mahlavu cells enriched by irradiation were characterized for their stemness gene expression, self-renewal, migration/invasion abilities, and radiation resistance. Having established irradiation-enriched CD133+ Mahlavu cells with CSC properties, we evaluated a phytochemical, pterostilbene (PT), found abundantly in blueberries, against irradiation-enriched CSCs. It was shown that PT treatment dose-dependently reduced the enrichment of CD133+ Mahlavu cells upon irradiation; PT treatment also prevented tumor sphere formation, reduced stemness gene expression, and suppressed invasion and migration abilities as well as increasing apoptosis of CD133+ Mahlavu CSCs. Based on our experimental data, pterostilbene could be used to prevent the enrichment of CD133+ hepatoma CSCs and should be considered for future clinical testing as a combined agent for HCC patients.
机译:对于许多恶性肿瘤而言,就其治愈潜力而言,放射疗法仍然是仅次于外科手术的第二选择。然而,辐射诱导的肿瘤细胞死亡受到许多因素的限制,包括肿瘤微环境对治疗的不良反应以及逃避性耐药的内在或获得性机制,以及癌症干细胞(CSC)的存在。在这项研究中,我们证明了使用流式细胞仪方法,使用不同剂量的辐照可导致CD133 + Mahlavu细胞富集。随后,通过辐射富集的CD133 + Mahlavu细胞的干基因表达,自我更新,迁移/侵袭能力和抗辐射性被表征。建立了具有CSC特性的富含辐射的CD133 + Mahlavu细胞后,我们针对富含辐射的CSCs评估了在蓝莓中大量发现的一种植物化学物,萜类植物(PT)。结果表明,PT处理剂量依赖性地降低了照射后CD133 + Mahlavu细胞的富集。 PT治疗还可以防止肿瘤球的形成,减少干基因表达,抑制侵袭和迁移能力以及增加CD133 + Mahlavu CSCs的凋亡。根据我们的实验数据,紫杉萜可用于防止CD133 + 肝癌CSC的富集,并应考虑作为肝癌患者的联合药物用于未来的临床测试。

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