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首页> 外文期刊>Blood: The Journal of the American Society of Hematology >Adhesion to osteopontin in the bone marrow niche regulates lymphoblastic leukemia cell dormancy.
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Adhesion to osteopontin in the bone marrow niche regulates lymphoblastic leukemia cell dormancy.

机译:骨髓小生境中骨桥蛋白的粘附可调节淋巴细胞白血病细胞休眠。

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Malignant cells may evade death from cytotoxic agents if they are in a dormant state. The host microenvironment plays important roles in cancer progression, but how niches might control cancer cell dormancy is little understood. Here we show that osteopontin (OPN), an extracellular matrix molecule secreted by osteoblasts, can function to anchor leukemic blasts in anatomic locations supporting tumor dormancy. We demonstrate that acute lymphoblastic leukemia (ALL) cells specifically adhere to OPN in vitro and secrete OPN when localized to the endosteal niche in vivo. Using intravital microscopy to perform imaging studies of the calvarial bone marrow (BM) of xenografted mice, we show that OPN is highly expressed adjacent to dormant tumor cells within the marrow. Inhibition of the OPN-signaling axis significantly increases the leukemic cell Ki-67 proliferative index and leads to a twofold increase in tumor burden in treated mice. Moreover, using cell-cycle-dependent Ara-C chemotherapy to produce minimal residual disease (MRD) in leukemic mice, we show that OPN neutralization synergizes with Ara-C to reduce detectable BM MRD. Taken together, these data suggest that ALL interacts with extracellular OPN within the malignant BM, and that this interaction induces cell cycle exit in leukemic blasts, protecting them from cytotoxic chemotherapy.
机译:如果恶性细胞处于休眠状态,则可以逃避细胞毒性剂的死亡。宿主微环境在癌症进展中起着重要作用,但对于利基如何控制癌细胞休眠的了解很少。在这里,我们显示骨桥蛋白(OPN)是成骨细胞分泌的一种细胞外基质分子,可以起到将白血病母细胞锚定在支持肿瘤休眠的解剖位置的作用。我们证明了急性淋巴细胞白血病(ALL)细胞在体外特异性粘附于OPN并在体内定位于骨内膜生境时会分泌OPN。使用活体显微镜对异种移植小鼠的颅骨骨髓(BM)进行成像研究,我们显示OPN在骨髓内的休眠肿瘤细胞附近高度表达。 OPN信号轴的抑制作用显着增加了白血病细胞Ki-67的增殖指数,并导致治疗小鼠的肿瘤负担增加了两倍。此外,使用细胞周期依赖性Ara-C化疗在白血病小鼠中产生最小残留疾病(MRD),我们显示OPN中和与Ara-C协同作用以减少可检测的BM MRD。综上所述,这些数据表明ALL与恶性BM内的细胞外OPN相互作用,并且这种相互作用诱导白血病胚细胞的细胞周期退出,从而保护它们免受细胞毒性化学疗法的侵害。

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