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The bisphosphonate zoledronic acid decreases tumor growth in bone in mice with defective osteoclasts.

机译:双膦酸盐唑来膦酸可降低破骨细胞缺陷小鼠骨骼中肿瘤的生长。

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摘要

Bisphosphonates (BPs), bone targeted drugs that disrupt osteoclast function, are routinely used to treat complications of bone metastasis. Studies in preclinical models of cancer have shown that BPs reduce skeletal tumor burden and increase survival. Similarly, we observed in the present study that administration of the Nitrogen-containing BP (N-BP), zoledronic acid (ZA) to osteolytic tumor-bearing Tax+ mice beginning at 6 months of age led to resolution of radiographic skeletal lesions. N-BPs inhibit farnesyl diphosphate (FPP) synthase, thereby inhibiting protein prenylation and causing cellular toxicity. We found that ZA decreased Tax+ tumor and B16 melanoma viability and caused the accumulation of unprenylated Rap1a proteins in vitro. However, it is presently unclear whether N-BPs exert anti-tumor effects in bone independent of inhibition of osteoclast (OC) function in vivo. Therefore, we evaluated the impact of treatment with ZA on B16 melanoma bone tumor burden in irradiated mice transplanted with splenic cells from src(-/-) mice, which have non-functioning OCs. OC-defective mice treated with ZA demonstrated a significant 88% decrease in tumor growth in bone compared to vehicle-treated OC-defective mice. These data support an osteoclast-independent role for N-BP therapy in bone metastasis.
机译:双膦酸盐(BPs)是破坏破骨细胞功能的骨靶向药物,通常用于治疗骨转移并发症。在临床前癌症模型中的研究表明,BP可以减少骨骼肿瘤的负担并提高生存率。类似地,我们在本研究中观察到,从6个月大开始向含溶骨性肿瘤的Tax +小鼠施用含氮的BP(N-BP),唑来膦酸(ZA),可以缓解放射成像的骨骼病变。 N-BP抑制法呢基二磷酸(FPP)合酶,从而抑制蛋白质异戊二烯化并引起细胞毒性。我们发现ZA降低了Tax +肿瘤和B16黑色素瘤的活力,并导致了未异戊二烯化的Rap1a蛋白的积累。然而,目前尚不清楚N-BP是否在骨中发挥抗肿瘤作用,而与体内对破骨细胞(OC)功能的抑制无关。因此,我们评估了ZA处理对src(-/-)小鼠脾细胞移植的辐射小鼠的B16黑色素瘤骨肿瘤负荷的影响,这些小鼠的OCs没有功能。与载体治疗的OC缺陷小鼠相比,用ZA治疗的OC缺陷小鼠表现出骨骼肿瘤生长显着减少88%。这些数据支持N-BP治疗在骨转移中不依赖破骨细胞的作用。

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