首页> 外文期刊>Breast cancer research and treatment. >Transcriptomic profiling of curcumin-treated human breast stem cells identifies a role for stearoyl-coa desaturase in breast cancer prevention
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Transcriptomic profiling of curcumin-treated human breast stem cells identifies a role for stearoyl-coa desaturase in breast cancer prevention

机译:姜黄素处理过的人类乳房干细胞的转录组分析确定了硬脂酰-Coa去饱和酶在预防乳腺癌中的作用

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Curcumin is a potential agent for both the prevention and treatment of cancers. Curcumin treatment alone, or in combination with piperine, limits breast stem cell self-renewal, while remaining non-toxic to normal differentiated cells. We paired fluorescence-activated cell sorting with RNA sequencing to characterize the genome-wide changes induced specifically in normal breast stem cells following treatment with these compounds. We generated genome-wide maps of the transcriptional changes that occur in epithelial-like (ALDH+) and mesenchymal-like (ALDH-/CD44+/CD24-) normal breast stem/progenitor cells following treatment with curcumin and piperine. We show that curcumin targets both stem cell populations by down-regulating expression of breast stem cell genes including ALDH1A3, CD49f, PROM1, and TP63. We also identified novel genes and pathways targeted by curcumin, including downregulation of SCD. Transient siRNA knockdown of SCD in MCF10A cells significantly inhibited mammosphere formation and the mean proportion of CD44+/CD24- cells, suggesting that SCD is a regulator of breast stemness and a target of curcumin in breast stem cells. These findings extend previous reports of curcumin targeting stem cells, here in two phenotypically distinct stem/progenitor populations isolated from normal human breast tissue. We identified novel mechanisms by which curcumin and piperine target breast stem cell self-renewal, such as by targeting lipid metabolism, providing a mechanistic link between curcumin treatment and stem cell self-renewal. These results elucidate the mechanisms by which curcumin may act as a cancer-preventive compound and provide novel targets for cancer prevention and treatment.
机译:姜黄素是预防和治疗癌症的潜在药物。姜黄素单独或与胡椒碱联合治疗可限制乳房干细胞的自我更新,同时对正常分化的细胞保持无毒。我们将荧光激活的细胞分选与RNA测序配对,以表征在用这些化合物处理后在正常乳腺干细胞中特异性诱导的全基因组变化。我们用姜黄素和胡椒碱处理后,在上皮样(ALDH +)和间质样(ALDH- / CD44 + / CD24-)正常乳腺干细胞/祖细胞中产生了转录变化的全基因组图。我们显示姜黄素通过下调包括ALDH1A3,CD49f,PROM1和TP63的乳腺癌干细胞基因的表达来靶向两种干细胞。我们还确定了姜黄素靶向的新型基因和途径,包括SCD的下调。 MCF10A细胞中SCD的瞬时siRNA敲低显着抑制了乳球形成以及CD44 + / CD24-细胞的平均比例,这表明SCD是乳腺干细胞的调节剂和姜黄素在乳腺干细胞中的靶标。这些发现扩展了姜黄素靶向干细胞的先前报道,这里是从正常人乳房组织中分离出的两个表型不同的干/祖细胞群。我们确定了姜黄素和胡椒碱靶向乳腺干细胞自我更新的新机制,例如通过靶向脂质代谢,从而提供了姜黄素治疗与干细胞自我更新之间的机械联系。这些结果阐明了姜黄素可充当癌症预防化合物并为癌症预防和治疗提供新靶标的机制。

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