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Marine sponge‐derived smenospongine preferentially eliminates breast cancer stem‐like cells via p38/AMPKα pathways

机译:海洋海绵衍生的海绵状海绵素优先通过p38 /AMPKα途径消除乳腺癌干细胞样细胞

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摘要

Breast cancer stem cells (CSCs) have been postulated as responsible for therapeutic failure of breast cancer. Novel agents effectively targeting breast CSCs are urging to be discovered to overcome cancer relapse and metastasis. We recently established a CSC‐like model through ectopic expression Nanog, a core pluripotency factor, in breast cancer cells and validated induced CSC‐like (MCF7‐Nanog) model acquired stem‐like properties. Using this model, we found that smenospongine (Sme), a natural sesquiterpene aminoquinone isolated from marine sponge Spongia pertusa Esper, preferentially inhibited the induced CSC‐like cells proliferation by inducing G0/G1 arrest and intrinsic apoptosis via increasing the phosphorylation level of p38 and AMPKα. Importantly, Sme exhibited the ability to abrogate CSC‐like cells associated with a downregulation of stem cell markers including Nanog, Sox2, and Bmi1. Functionally, Sme inhibited the ability of MCF7‐Nanog cells to form tumor sphere in vitro and develop tumor in vivo. Significant antitumor effects are observed in Sme‐treated mouse xenograft tumor models, with no apparent toxicity to mice. Taken together, our findings provide a CSC‐like model to identify novel CSC‐targeting drugs and identify Sme as a candidate natural agent for treatment of breast cancer.
机译:乳腺癌干细胞(CSCs)被认为是导致乳腺癌治疗失败的原因。敦促发现有效靶向乳腺癌CSC的新型药物,以克服癌症的复发和转移。我们最近通过异位表达核心多能性因子Nanog在乳腺癌细胞中建立了CSC样模型,并验证了诱导的CSC样(MCF7-Nanog)模型获得了茎样特性。使用该模型,我们发现从海洋海绵海绵宝宝中分离出的天然倍半萜烯醌-倍半萜胺(Sme)通过抑制p38和p38的磷酸化水平来诱导G0 / G1阻滞和内在凋亡,从而优先抑制诱导的CSC样细胞增殖。 AMPKα。重要的是,Sme具有消除与干细胞标志物(包括Nanog,Sox2和Bmi1)下调相关的CSC样细胞的能力。在功能上,Sme抑制MCF7-Nanog细胞在体外形成肿瘤球并在体内发展为肿瘤的能力。在Sme治疗的小鼠异种移植肿瘤模型中观察到了显着的抗肿瘤作用,对小鼠没有明显的毒性。综上所述,我们的发现提供了一种类似于CSC的模型,以识别新型靶向CSC的药物,并将Sme鉴定为治疗乳腺癌的候选天然药物。

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