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Activation of MCP-1/CCR2 axis promotes prostate cancer growth in bone

机译:MCP-1 / CCR2轴的激活促进骨骼中前列腺癌的生长

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Prostate cancer (PCa) frequently metastasizes to bone resulting in a mixture of osteolytic and osteoblastic lesions. We have previously reported that monocyte chemotactic protein-1 (MCP-1) is chemotactic for PCa cells, and its receptor, CCR2 expression, correlates with pathological stages. However, the role of MCP-1/CCR2 axis on PCa progression in bone remains unclear. We first evaluated the serum levels of MCP-1 in patients with bone metastases or localized PCa by enzyme-linked immunosorbent assay. We found that MCP-1 levels were elevated in patients with bone metastases compared to localized PCa. We further determined the effects of knockdown CCR2 or MCP-1 on PCa cell invasion and the tumor cell-induced osteoclast activity in vitro, respectively. PCa C4-2B and PC3 cells were transfected stably with either CCR2 short hairpin RNA (shRNA) or a scrambled RNA. CCR2 knockdown significantly diminished the MCP-1-induced PCa cell invasion. In addition, the MCP-1 production was knocked down by MCP-1 shRNA in C4-2B and PC3 cells. Conditioned media (CM) was collected and determined for the CM-induced osteoclast formation in vitro. MCP-1 knockdown significantly decreased the PCa CM-induced osteoclast formation. Finally, MCP-1 knockdown PC3 cells were implanted into the tibia of SCID mice for 4 weeks. Tumor volume was determined by histopathology and bone histomorphometry. MCP-1 knockdown diminished PC3 tumor growth in bone. We concluded that activation of MCP-1/CCR2 axis promotes PCa growth in bone. This study suggests that MCP-1 may be a target for PCa progression.
机译:前列腺癌(PCa)经常转移到骨骼,导致溶骨性和成骨性病变的混合。我们以前曾报道过,单核细胞趋化蛋白1(MCP-1)对PCa细胞具有趋化性,其受体CCR2表达与病理阶段相关。然而,MCP-1 / CCR2轴对骨骼中PCa进展的作用仍不清楚。我们首先通过酶联免疫吸附法评估了骨转移或局部PCa患者的MCP-1血清水平。我们发现与局部PCa相比,骨转移患者的MCP-1水平升高。我们进一步确定了敲低CCR2或MCP-1对体外PCa细胞侵袭和肿瘤细胞诱导的破骨细胞活性的影响。用CCR2短发夹RNA(shRNA)或加扰的RNA稳定转染PCa C4-2B和PC3细胞。 CCR2组合式大大减少了MCP-1诱导的PCa细胞入侵。此外,MCP-1 shRNA在C4-2B和PC3细胞中可降低MCP-1的产量。收集条件培养基(CM),并确定体外CM诱导的破骨细胞形成。 MCP-1敲低显着减少了PCa CM诱导的破骨细胞形成。最后,将MCP-1基因敲低的PC3细胞植入SCID小鼠的胫骨中持续4周。通过组织病理学和骨组织形态学测定肿瘤体积。 MCP-1敲低减少了PC3肿瘤在骨骼中的生长。我们得出的结论是,激活MCP-1 / CCR2轴会促进骨骼中PCa的生长。这项研究表明,MCP-1可能是PCa进展的靶标。

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