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首页> 外文期刊>Molecular Cancer >Direct but not indirect co-culture with osteogenically differentiated human bone marrow stromal cells increases RANKL/OPG ratio in human breast cancer cells generating bone metastases
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Direct but not indirect co-culture with osteogenically differentiated human bone marrow stromal cells increases RANKL/OPG ratio in human breast cancer cells generating bone metastases

机译:与成骨分化的人类骨髓基质细胞直接而非间接共培养会增加人类乳腺癌细胞发生骨转移的RANKL / OPG比

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Background Bone metastases arise in nearly 70% of patients with advanced breast cancer, but the complex metastatic process has not been completely clarified yet. RANKL/RANK/OPG pathway modifications and the crosstalk between metastatic cells and bone have been indicated as potential drivers of the process. Interactions between tumor and bone cells have been studied in vivo and in vitro , but specific effects of the direct contact between human metastatic cells and human bone cells on RANKL/RANK/OPG pathway have not been investigated. Findings We directly co-cultured bone metastatic human breast cancer cells (BOKL) with osteo-differentiated human mesenchymal cells (BMSCs) from 3 different donors. BMSCs and BOKL were then enzymatically separated and FACS sorted. We found a significant increase in the RANKL/OPG ratio as compared to control, which was not observed in BOKL cultured in medium conditioned by BMSCs, neither in BOKL directly cultured with fibroblasts or medium conditioned by fibroblasts. Direct co-culture with osteo-differentiated BMSCs caused BOKL aggregation while proliferation was not affected by co-culture. To more specifically associate RANKL expression to osteogenic differentiation degree of BMSCs, we determined their osteogenic markers expression and matrix calcification relative to osteoblasts and fibroblasts. Conclusions In conclusion, our co-culture model allowed to demonstrate for the first time that direct contact but not paracrine interactions between human metastatic breast cancer cells and bone cells has a significant effect on RANKL/OPG expression in bone metastatic cells. Furthermore, only direct contact with the bone microenvironment induced BOKL clustering without however significantly influencing their proliferation and migration.
机译:背景技术在近70%的晚期乳腺癌患者中会发生骨转移,但是复杂的转移过程尚未完全阐明。 RANKL / RANK / OPG途径的修饰以及转移细胞与骨骼之间的串扰已被指示为该过程的潜在驱动因素。已经在体内和体外研究了肿瘤与骨细胞之间的相互作用,但是尚未研究人转移细胞与人骨细胞之间直接接触对RANKL / RANK / OPG途径的特异性作用。结果我们直接将骨转移性人乳腺癌细胞(BOKL)与来自3个不同供体的骨分化人间充质细胞(BMSC)共培养。然后将BMSC和BOKL进行酶分离并进行FACS分选。我们发现与对照相比,RANKL / OPG比率显着增加,这在用BMSCs调节的培养基中培养的BOKL中,在用成纤维细胞直接培养的BOKL中或用成纤维细胞调节的培养基中均未观察到。与骨分化的BMSC直接共培养会导致BOKL聚集,而增殖不受共培养的影响。为了更具体地将RANKL表达与BMSC的成骨分化程度相关,我们确定了它们相对于成骨细胞和成纤维细胞的成骨标志物表达和基质钙化。结论总之,我们的共培养模型首次证明了人类转移性乳腺癌细胞与骨细胞之间的直接接触而非旁分泌相互作用对骨转移细胞中RANKL / OPG的表达具有重要影响。此外,仅与骨微环境直接接触会诱导BOKL聚集,而不会显着影响其增殖和迁移。

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