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Reprogramming the chemical reactivity of iron in cancer stem cells

机译:重新编程癌症干细胞中铁的化学反应性

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摘要

Cancer stem cells (CSCs) have been shown to be refractory to conventional therapeutic agents, can promote metastasis, and have been linked to cancer relapse. Salinomycin can selectively kill CSCs.We have shown that salinomycin derivatives accumulate in lysosomes and sequester iron in this organelle. As a result, accumulation of iron leads to the production of reactive oxygen species and lysosomal membrane permeabilization, which in turn promotes cell death by ferroptosis. These findings have revealed the prevalence of iron homeostasis in CSCs and paved the way toward the development of next-generation therapeutics.
机译:已显示癌症干细胞(CSCs)对常规治疗剂的难治性,可以促进转移,并与癌症复发相关联。 SALINOMYCIN可以选择性地杀死CSC。我们已经表明,蝾螈衍生物在溶酶体中积聚并在该细胞器中螯合铁。 结果,铁的积累导致反应性氧物质和溶酶体膜透化的产生,这反过来促进了恶性凋亡的细胞死亡。 这些发现揭示了CSC的铁袜患病率,并为下一代治疗剂的发展铺平了道路。

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