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首页> 外文期刊>Annals of the New York Academy of Sciences >Bone Destruction in Multiple Myeloma
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Bone Destruction in Multiple Myeloma

机译:多发性骨髓瘤的骨破坏

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摘要

Multiple myeloma (MM) is characterized by accumulation of monoclonal plasma cells in the bone marrow and progression of lytic bone lesions. MM cells enhance bone resorption by triggering a coordinated increase in RANK ligand and decrease in osteoprotegerin in the bone marrow. Macrophage inflammatory protein (MIP)-1α and (MIP)-1β are secreted by MM cells, and play a major role in the enhancement of bone resorption by MM cells. Furthermore, the growth and survival of MM cells are enhanced by contact with osteoclasts (OCs) suggesting the presence of a vicious cycle between OCs and MM cells. OCs also enhance angiogenesis in concert with MM cells largely through the cooperative actions of osteopontin from OCs and VEGF from MM cells. The angiogenic effect may further facilitate the vicious cycle between bone destruction and MM cell expansion. In addition, MM cells secrete soluble factor(s) to suppress bone formation. Secreted Frizzled-related protein (sFRP)-2, an inhibitor of Wingless type (Wnt) binding to Frizzled, is produced by most MM cells, and immunodepletion of sFRP-2 abrogates the inhibition of bone formation. Thus, MM cells enhance bone resorption and suppress bone formation to cause destructive bone lesions. Further elucidation of the mechanism of bone destruction by MM may lead to a novel therapeutic approach to prevent bone destruction and tumor growth.
机译:多发性骨髓瘤(MM)的特征是单克隆浆细胞在骨髓中积聚和溶骨性病变的发展。 MM细胞通过触发RANK配体的协同增加和骨髓中骨保护素的减少来增强骨吸收。巨噬细胞炎症蛋白(MIP)-1α和(MIP)-1β由MM细胞分泌,并在增强MM细胞的骨吸收中起主要作用。此外,通过与破骨细胞(OC)接触增强了MM细胞的生长和存活,这表明OC和MM细胞之间存在恶性循环。 OCs还通过OCs中的骨桥蛋白和MM细胞中的VEGF的协同作用来增强与MM细胞协同作用的血管生成。血管生成作用可以进一步促进骨破坏和MM细胞扩增之间的恶性循环。另外,MM细胞分泌可溶性因子以抑制骨形成。大多数MM细胞都会产生分泌的卷曲蛋白相关蛋白(sFRP)-2,它是一种无翅型(Wnt)与卷曲蛋白结合的抑制剂,并且sFRP-2的免疫消耗消除了对骨形成的抑制作用。因此,MM细胞增强骨吸收并抑制骨形成以引起破坏性骨损伤。 MM对骨破坏机制的进一步阐明可能会导致一种新颖的治疗方法,以防止骨破坏和肿瘤生长。

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