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Activated hepatic stellate cells secrete periostin to induce stem cell-like phenotype of residual hepatocellular carcinoma cells after heat treatment

机译:活化的肝星状细胞分泌骨膜素以诱导热处理后残留肝细胞癌细胞的干细胞样表型

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摘要

Some evidences show that residual tumor after thermal ablation will progress rapidly. However, its mechanisms remain unclear. Here, we assessed whether activated HSCs could regulate stem cell-like property of residual tumor after incomplete thermal ablation to promote tumor progression. Human HCC cell lines were exposed to sublethal heat treatment to simulate the peripheral zone of thermal ablation. After residual HCC cells were cultured with conditional medium (CM) from activated HSCs, parameters of the stem cell-like phenotypes were analyzed. Nude mice bearing heat-exposed residual HCC cells and HSCs were subjected to metformin treatment to thwarter tumor progression. CM from activated primary HSCs or LX-2 cells significantly induced the stem cell-like phenotypes of residual HCC cells after heat treatment. These effects were significantly abrogated by neutralizing periostin (POSTN) in the CM. POSTN regulated the stemness of heat-exposed residual HCC cells via activation of integrin β1/AKT/GSK-3β/β-catenin/TCF4/Nanog signaling pathway. Metformin significantly inhibited in vivo progression of heat-exposed residual HCC via suppressing POSTN secretion and decreasing cancer stem cell marker expression. Our data propose a new mechanism of activated HSCs promoting the stemness traits of residual HCC cells after incomplete thermal ablation and suggest metformin as a potential drug to reverse this process.
机译:一些证据表明,热消融后残留的肿瘤将迅速发展。但是,其机制仍不清楚。在这里,我们评估了不完全热消融后活化的HSC是否可以调节残留肿瘤的干细胞样特性,从而促进肿瘤进展。将人类HCC细胞系暴露于亚致死热处理中,以模拟热消融的外围区域。用激活的HSC的条件培养基(CM)培养残留的HCC细胞后,分析干细胞样表型的参数。携带热暴露残留HCC细胞和HSC的裸鼠接受二甲双胍治疗以阻止肿瘤进展。活化的原代HSC或LX-2细胞产生的CM在热处理后可显着诱导残留HCC细胞的干细胞样表型。通过中和骨膜中的骨膜素(POSTN),可以显着消除这些影响。 POSTN通过激活整联蛋白β1/ AKT /GSK-3β/β-catenin/ TCF4 / Nanog信号通路来调节热暴露的残留HCC细胞的干性。二甲双胍通过抑制POSTN分泌和减少癌症干细胞标志物的表达来显着抑制体内暴露于热的残留HCC的进程。我们的数据提出了活化HSC促进不完全热消融后残余HCC细胞干性特征的新机制,并建议二甲双胍作为逆转这一过程的潜在药物。

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