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首页> 外文期刊>Blood: The Journal of the American Society of Hematology >CXCR4 inhibitor AMD3100 disrupts the interaction of multiple myeloma cells with the bone marrow microenvironment and enhances their sensitivity to therapy.
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CXCR4 inhibitor AMD3100 disrupts the interaction of multiple myeloma cells with the bone marrow microenvironment and enhances their sensitivity to therapy.

机译:CXCR4抑制剂AMD3100破坏了多个骨髓瘤细胞与骨髓微环境的相互作用,并增强了其对治疗的敏感性。

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The interaction of multiple myeloma (MM) cells with their microenvironment in the bone marrow (BM) provides a protective environment and resistance to therapeutic agents. We hypothesized that disruption of the interaction of MM cells with their BM milieu would lead to their sensitization to therapeutic agents such as bortezomib, melphalan, doxorubicin, and dexamethasone. We report that the CXCR4 inhibitor AMD3100 induces disruption of the interaction of MM cells with the BM reflected by mobilization of MM cells into the circulation in vivo, with kinetics that differed from that of hematopoietic stem cells. AMD3100 enhanced sensitivity of MM cell to multiple therapeutic agents in vitro by disrupting adhesion of MM cells to bone marrow stromal cells (BMSCs). Moreover, AMD3100 increased mobilization of MM cells to the circulation in vivo, increased the ratio of apoptotic circulating MM cells, and enhanced the tumor reduction induced by bortezomib. Mechanistically, AMD3100 significantly inhibited Akt phosphorylation and enhanced poly(ADP-ribose) polymerase (PARP) cleavage as a result of bortezomib, in the presence of BMSCs in coculture. These experiments provide a proof of concept for the use of agents that disrupt interaction with the microenvironment for enhancement of efficacy of cytotoxic agents in cancer therapy.
机译:多发性骨髓瘤(MM)细胞与其在骨髓(BM)中的微环境的相互作用提供了保护性环境和对治疗剂的耐药性。我们假设破坏MM细胞与其BM环境的相互作用将导致它们对诸如硼替佐米,美法仑,阿霉素和地塞米松的治疗剂敏感。我们报道,CXCR4抑制剂AMD3100诱导MM细胞与BM的相互作用受到破坏,这是由MM细胞动员进入体内循环所反映的,其动力学不同于造血干细胞。 AMD3100通过破坏MM细胞与骨髓基质细胞(BMSC)的粘附力,提高了MM细胞对多种治疗剂的体外敏感性。此外,AMD3100增加了MM细胞在体内循环中的动员,增加了凋亡性循环MM细胞的比例,并增强了硼替佐米诱导的肿瘤减少。从机理上讲,在共培养BMSC的情况下,由于硼替佐米的作用,AMD3100显着抑制了Akt磷酸化并增强了聚(ADP-核糖)聚合酶(PARP)的裂解。这些实验提供了使用试剂来破坏与微环境的相互作用以增强细胞毒剂在癌症治疗中的功效的概念证明。

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