首页> 外文期刊>Journal of bone and mineral research: the official journal of the American Society for Bone and Mineral Research >Human Bone Marrow Stromal Cells Protect Prostate Cancer Cells From TRAIL-Induced Apoptosis.
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Human Bone Marrow Stromal Cells Protect Prostate Cancer Cells From TRAIL-Induced Apoptosis.

机译:人骨髓基质细胞保护前列腺癌细胞免受TRAIL诱导的细胞凋亡。

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Tumor-derived OPG has recently been shown to protect prostate cancer cells from apoptosis. This study has confirmed that bone marrow stromal cell-derived OPG also suppresses cytokine-induced apoptosis in this tumor type, suggesting that it may be the presence of bone-derived OPG that is responsible for the observed preference of these cells in colonizing the skeleton. INTRODUCTION: Metastasis to the skeleton occurs in around 70% of patients with advanced prostate cancer (CaP), suggesting that the bone microenvironment may provide factors that favor the growth and survival of prostate cancer cells. Osteoprotegerin (OPG) is a molecule involved in bone remodeling, where it acts as an inhibitor of osteoclastogenesis, but it is also a decoy receptor for TRAIL/Apo 2L, a member of the TNF family of pro-apoptotic cytokines. The aim of this study was to determine whether OPG produced by human bone marrow stromal cells could protect prostate cancer cells from TRAIL-induced apoptosis. MATERIALS AND METHODS: Humanbone marrow stromal cell cultures were generated from bone biopsies taken from newly diagnosed untreated CaP patients with (M1) or without (M0) bony metastasis. The stromal origin of these cells was confirmed by Western blot analysis using antibodies raised to stromal and epithelial markers. Media were conditioned over the cultures of these cells for 4 days, and levels of OPG were determined using an ELISA. The human prostate cancer cell line PC3 was challenged with TRAIL (50 ng/ml) in fresh media or in media supplemented with 50% conditioned media, and apoptosis was assessed using DAPI stain. The effects of specific removal of OPG activity by immunoprecipitation or by co-treatment of cultures with an alternative ligand for OPG (RANKL) were also tested. RESULTS AND CONCLUSIONS: The presence of stromal cell conditioned media in PC3 culture significantly reduced TRAIL-induced apoptosis. All stromal cell lines isolated were shown to express OPG and to release this protein into the conditioned media. Immunoprecipitation of OPG and co-treatment of cultures with sRANKL reversed the protective effects of the conditioned media. These data suggest that at least part of the survival advantage gained by CaP cells in colonizing bone may be caused by the production of OPG by tumor-associated stromal cells.
机译:肿瘤来源的OPG最近被证明可以保护前列腺癌细胞免于凋亡。这项研究已经证实,骨髓基质细胞来源的OPG还能抑制这种肿瘤类型的细胞因子诱导的凋亡,这表明可能是由于骨来源的OPG的存在导致观察到的这些细胞在定居骨骼中的偏好。简介:骨骼的转移发生在大约70%的晚期前列腺癌(CaP)患者中,这表明骨骼微环境可能提供有利于前列腺癌细胞生长和存活的因素。骨保护素(OPG)是一种参与骨重塑的分子,在其中它是破骨细胞生成的抑制剂,但它还是TRAIL / Apo 2L的诱饵受体,TRAIL / Apo 2L是促凋亡细胞因子TNF家族的成员。这项研究的目的是确定人类骨髓基质细胞产生的OPG是否可以保护前列腺癌细胞免受TRAIL诱导的细胞凋亡。材料与方法:骨髓基质细胞培养物是从新诊断为未经治疗的CaP患者(M1或无M0骨转移)的活检组织中产生的。通过使用针对基质和上皮标志物的抗体的蛋白质印迹分析,证实了这些细胞的基质起源。使培养基在这些细胞的培养物中适应4天,并使用ELISA确定OPG的水平。在新鲜培养基或补充有50%条件培养基的培养基中,用TRAIL(50 ng / ml)攻击人前列腺癌细胞系PC3,并使用DAPI染色评估细胞凋亡。还测试了通过免疫沉淀或通过用OPG替代配体(RANKL)共同处理培养物特异性去除OPG活性的影响。结果与结论:PC3培养物中基质细胞条件培养基的存在显着降低了TRAIL诱导的细胞凋亡。显示所有分离的基质细胞系均表达OPG,并将该蛋白释放到条件培养基中。 OPG的免疫沉淀以及与sRANKL共同处理培养物可逆转条件培养基的保护作用。这些数据表明,CaP细胞在定植骨中获得的至少部分生存优势可能是由肿瘤相关基质细胞产生OPG引起的。

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