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Identification of pancreatic cancer stem cells and selective toxicity of chemotherapeutic agents

机译:胰腺癌干细胞的鉴定和化疗药物的选择性毒性

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Background & Aims: Identification and purification of cancer stem cells (CSCs) could lead to new therapeutic targets, but their heterogeneous expansion is an obstacle to their study. We investigated whether it is possible to monitor pancreatic CSCs in real time, based on their intrinsic low level of proteasome activity. Methods: We engineered human pancreatic adenocarcinoma cells (PANC1, MIAPaCa2, BxPC3, and KLM1) to express a green fluorescent molecule fused to the degron of ornithine decarboxylase (Gdeg) from a retroviral vector; the fluorescent Gdeg accumulates in CSCs as a result of low activity of the 26S proteasome. Cells with high and low levels of fluorescence (Gdeg high and Gdeg low) were isolated by flow cytometry; tumor growth was analyzed in immunocompromised mice. We performed a screen for agents that were specifically toxic to pancreatic CSCs, in a synthetic lethal manner. Results: Gdeg high cells, but not Gdeg low cells, formed spheres and underwent asymmetric division - features of CSCs. Injection of as few as 10 Gdeg high cells led to tumor formation in mice. Gemcitabine was toxic to cultured Gdeg low cells, whereas Gdeg high cells were resistant. We observed that quercetin was toxic to Gdeg high cells in culture and in pre-established tumors grown from these cells in mice. Nuclear accumulation of β-catenin was detected in Gdeg high, but not Gdeg low, and lost after exposure to quercetin. Conclusions: We used a fluorescence marker system for level of proteasome activity to identify pancreatic cancer cells with features of cancer stem cells. We identified quercetin as a compound that is specifically toxic to pancreatic CSCs.
机译:背景与目的:癌症干细胞(CSC)的鉴定和纯化可能导致新的治疗靶标,但它们的异质性扩展成为其研究的障碍。我们基于其固有的低水平的蛋白酶体活性,研究了是否有可能实时监测胰腺CSC。方法:我们改造了人胰腺腺癌细胞(PANC1,MIAPaCa2,BxPC3和KLM1),以表达与逆转录病毒载体上鸟氨酸脱羧酶(Gdeg)的并发子融合的绿色荧光分子。由于26S蛋白酶体的低活性,荧光Gdeg在CSC中积累。通过流式细胞仪分离具有高和低荧光水平(Gdeg高和Gdeg低)的细胞;在免疫受损的小鼠中分析了肿瘤的生长。我们以合成致死的方式筛选了对胰腺CSC有特异毒性的药物。结果:Gdeg高细胞形成球体,而不是Gdeg低细胞形成球体,并且不对称分裂-CSCs的特征。注射低至10 Gdeg的高细胞会导致小鼠肿瘤形成。吉西他滨对培养的Gdeg低细胞有毒性,而Gdeg高细胞具有抗性。我们观察到槲皮素对培养中的Gdeg高细胞和在小鼠中由这些细胞生长的预先建立的肿瘤具有毒性。 β-catenin的核积累在高Gdeg时被检测到,但在低Gdeg时未检测到,并在暴露于槲皮素后丢失。结论:我们使用了荧光标记系统来检测蛋白酶体的活性,以鉴定具有癌干细胞特征的胰腺癌细胞。我们确定槲皮素是一种对胰腺CSC特别有毒的化合物。

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