首页> 外文期刊>Cancer: A Journal of the American Cancer Society >Eradication of chemotherapy-resistant CD44+ human ovarian cancer stem cells in mice by intraperitoneal administration of Clostridium perfringens enterotoxin.
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Eradication of chemotherapy-resistant CD44+ human ovarian cancer stem cells in mice by intraperitoneal administration of Clostridium perfringens enterotoxin.

机译:通过腹膜内注射产气荚膜梭状芽胞杆菌肠毒素根除小鼠抗化疗的CD44 +人卵巢癌干细胞。

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BACKGROUND: Emerging evidence has suggested that the capability to sustain tumor formation, growth, and chemotherapy resistance in ovarian as well as other human malignancies exclusively resides in a small proportion of tumor cells termed cancer stem cells. During the characterization of CD44(+) ovarian cancer stem cells, we found a high expression of the genes encoding for claudin-4. Because this tight junction protein is the natural high-affinity receptor for Clostridium perfringens enterotoxin (CPE), we have extensively investigated the sensitivity of ovarian cancer stem cells to CPE treatment in vitro and in vivo. METHODS: Real-time polymerase chain reaction and flow cytometry were used to evaluate claudin-3/-4 expression in ovarian cancer stem cells. Small interfering RNA knockdown experiments and MTS assays were used to evaluate CPE-induced cytotoxicity against ovarian cancer stem cell lines in vitro. C.B-17/SCID mice harboring ovarian cancer stem cell xenografts were used to evaluate CPE therapeutic activity in vivo. RESULTS: CD44(+) ovarian cancer stem cells expressed claudin-4 gene at significantly higher levels than matched autologous CD44(-) ovarian cancer cells, and regardless of their higher resistance to chemotherapeutic agents died within 1 hour after exposure to 1.0 mug/mL of CPE in vitro. Conversely, small-interfering RNA-mediated knockdown of claudin-3/-4 expression in CD44(+) cancer stem cells significantly protected cancer stem cells from CPE-induced cytotoxicity. Importantly, multiple intraperitoneal administrations of sublethal doses of CPE in mice harboring xenografts of chemotherapy-resistant CD44(+) ovarian cancer stem cells had a significant inhibitory effect on tumor progression leading to the cure and/or long-term survival of all treated animals (ie, 100% reduction in tumor burden in 50% of treated mice; P < .0001). CONCLUSIONS: CPE may represent an unconventional, potentially highly effective strategy to eradicate chemotherapy-resistant cancer stem cells.
机译:背景:新兴证据表明,维持卵巢以及其他人类恶性肿瘤中肿瘤形成,生长和化疗耐药性的能力仅存在于一小部分被称为癌干细胞的肿瘤细胞中。在表征CD44(+)卵巢癌干细胞的过程中,我们发现了编码claudin-4的基因的高表达。由于此紧密连接蛋白是产气荚膜梭菌肠毒素(CPE)的天然高亲和力受体,因此我们已广泛研究了卵巢癌干细胞在体内和体外对CPE治疗的敏感性。方法:采用实时聚合酶链反应和流式细胞术评估claudin-3 / -4在卵巢癌干细胞中的表达。小型干扰RNA敲低实验和MTS分析用于评估CPE诱导的体外对卵巢癌干细胞系的细胞毒性。携带卵巢癌干细胞异种移植物的C.B-17 / SCID小鼠用于评估CPE在体内的治疗活性。结果:CD44(+)卵巢癌干细胞表达claudin-4基因的水平显着高于匹配的自体CD44(-)卵巢癌细胞,并且无论其对化学治疗剂的更高耐药性在暴露于1.0马克杯/毫升后1小时内死亡CPE体外。相反,CD44(+)癌症干细胞中的小干扰RNA介导的claudin-3 / -4表达的敲低显着保护了癌症干细胞免受CPE诱导的细胞毒性作用。重要的是,在携带具有化疗抗性CD44(+)卵巢癌干细胞异种移植物的小鼠中,多次致死剂量的CPE腹膜内给药对肿瘤进展具有显着的抑制作用,导致所有治疗动物的治愈和/或长期存活(也就是说,在50%受治疗的小鼠中,肿瘤负荷降低了100%; P <.0001)。结论:CPE可能代表了一种根除可能对化疗耐药的癌症干细胞的高效策略。

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