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骨保护素在同基因和裸鼠实验性骨转移模型中可抑制骨溶解并减轻骨骼肿瘤负荷。

Osteoprotegerin inhibits osteolysis and decreases skeletal tumor burden in syngeneic and nude mouse models of experimental bone metastasis.

作者信息

Morony S, Capparelli C, Sarosi I, Lacey D L, Dunstan C R, Kostenuik P J

机构信息

Department of Pharmacology/Pathology, Amgen Inc., One Amgen Center Drive, Thousand Oaks, CA 91320, USA.

出版信息

Cancer Res. 2001 Jun 1;61(11):4432-6.

Abstract

Certain malignancies, including breast cancer, frequently metastasize to bone, where the tumor cells induce osteoclasts to locally destroy bone. Osteoprotegerin (OPG), a member of the tumor necrosis factor receptor family, is a negative regulator of osteoclast differentiation, activation, and survival. We tested the ability of recombinant OPG to inhibit tumor-induced osteoclastogenesis, osteolysis, and skeletal tumor burden in two animal models. In a syngeneic model, mouse colon adenocarcinoma (Colon-26) cells were injected into the left ventricle of mice. Treatment with OPG dose-dependently decreased the number and area of radiographically evident lytic bone lesions, which, at the highest dose, were undetectable. Histologically, OPG also decreased skeletal tumor burden and tumor-associated osteoclasts. In a nude mouse model, OPG treatment completely prevented radiographic osteolytic lesions caused by human MDA-MB-231 breast cancer cells. Histologically, OPG decreased skeletal tumor burden by 75% and completely eradicated MDA tumor-associated osteoclasts. In both models, OPG had no effect on metastatic tumor burden in a panel of soft tissue organs. These data indicate that OPG may be an effective therapy for preventing osteolysis and decreasing skeletal tumor burden in patients with bone metastasis.

摘要

某些恶性肿瘤,包括乳腺癌,经常转移至骨骼,肿瘤细胞在骨骼局部诱导破骨细胞破坏骨质。骨保护素(OPG)是肿瘤坏死因子受体家族成员,是破骨细胞分化、激活及存活的负性调节因子。我们在两种动物模型中测试了重组OPG抑制肿瘤诱导的破骨细胞生成、骨溶解及骨骼肿瘤负荷的能力。在同基因模型中,将小鼠结肠腺癌(Colon-26)细胞注入小鼠左心室。用OPG治疗剂量依赖性地减少了X线片上明显的溶骨性骨病变的数量和面积,在最高剂量时这些病变无法检测到。组织学上,OPG也降低了骨骼肿瘤负荷及肿瘤相关破骨细胞。在裸鼠模型中,OPG治疗完全预防了人MDA-MB-231乳腺癌细胞引起的X线片溶骨性病变。组织学上,OPG使骨骼肿瘤负荷降低75%,并完全消除了MDA肿瘤相关破骨细胞。在两种模型中,OPG对一组软组织器官中的转移瘤负荷均无影响。这些数据表明,OPG可能是预防骨转移患者骨溶解和降低骨骼肿瘤负荷的有效疗法。

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