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Osteolytic prostate cancer cells induce the expression of specific cytokines in bone-forming osteoblasts through a Stat3/5-dependent mechanism.

机译:溶骨前列腺癌细胞通过Stat3 / 5依赖性机制诱导成骨成骨细胞中特定细胞因子的表达。

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Prostate cancer primarily metastasizes to bone, and the interaction of cancer cells with bone cells results in a local activation of bone formation and/or bone resorption. Since the cellular and molecular mechanisms underlying the development of these tumor-induced osteoblastic or osteolytic lesions are still poorly understood, we have compared the effects of two prostate cancer cell lines, osteoblastic MDA-PCa-2b cells and osteolytic PC-3 cells, on bone-forming osteoblasts. Using Affymetrix Gene Chip hybridization followed by qRT-PCR confirmation we were able to identify specific genes, including Smpd3 and Dmp1, whose expression is significantly reduced upon treatment with PC-3-conditioned medium. Moreover, we observed that PC-3-conditioned medium led to a marked induction of several cytokine genes, including Cxcl5, Cxcl12 and Tnfsf11, the latter one encoding for the osteoclast differentiation factor Rankl. Likewise, when we analyzed the effects of MDA-PCa-2b- and PC-3-conditioned medium on signal transduction in osteoblasts we did not only observe opposite effects on the canonical Wnt signalling pathway, but also a specific induction of Erk and Stat phosphorylation by PC-3-conditioned medium. Most importantly, the induction of Cxcl5, Cxcl12 and Tnfsf11 in osteoblasts by PC-3-conditioned medium was abrogated by the Stat3/5 inhibitor piceatannol, whereas the selective blockade of Stat1 and Erk activation had no effect. Together with the finding, that activated Stat3 in osteoblasts was detectable in bone biopsies from patients with osteolytic metastases, our data suggest that the Stat3/5-dependent activation of cytokine expression in osteoblasts may have a significant impact on cancer cell migration and proliferation, but also on osteoclast activation.
机译:前列腺癌主要转移至骨,并且癌细胞与骨细胞的相互作用导致骨形成和/或骨吸收的局部活化。由于尚不清楚这些肿瘤诱导的成骨或溶骨性病变发展的细胞和分子机制,因此我们比较了两种前列腺癌细胞系,成骨性MDA-PCa-2b细胞和溶骨性PC-3细胞的作用。成骨的成骨细胞。使用Affymetrix基因芯片杂交,然后通过qRT-PCR确认,我们能够鉴定特定基因,包括Smpd3和Dmp1,在用PC-3条件培养基处理后其表达显着降低。此外,我们观察到PC-3条件培养基可显着诱导几种细胞因子基因,包括Cxcl5,Cxcl12和Tnfsf11,后者编码破骨细胞分化因子Rankl。同样,当我们分析MDA-PCa-2b和PC-3条件培养基对成骨细胞信号转导的影响时,我们不仅观察到对经典Wnt信号通路的相反影响,而且观察到Erk和Stat磷酸化的特异性诱导通过PC-3条件培养基。最重要的是,Stat3 / 5抑制剂piceatannol废除了PC-3条件培养基在成骨细胞中Cxcl5,Cxcl12和Tnfsf11的诱导,而对Stat1和Erk激活的选择性阻断没有作用。与该发现一起,在溶骨性转移患者的骨活检中可检测到成骨细胞中的Stat3被激活,我们的数据表明成骨细胞中Stat3 / 5依赖性细胞因子表达的激活可能对癌细胞的迁移和增殖有重要影响,但是也对破骨细胞活化。

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