Nannuru Kalyan C, Futakuchi Mitsuru, Sadanandam Anguraj, Wilson Thomas J, Varney Michelle L, Myers Kathleen J, Li Xiaodong, Marcusson Eric G, Singh Rakesh K
Department of Pathology and Microbiology, University of Nebraska Medical Center, Omaha, NE 68198-5845, USA.
Clin Exp Metastasis. 2009;26(7):797-808. doi: 10.1007/s10585-009-9279-2. Epub 2009 Jul 10.
The bone microenvironment plays a critical role in tumor-induced osteolysis and osteolytic metastasis through tumor-bone (TB)-interaction. Receptor activator of nuclear factor-kappaB (RANK) ligand (RANKL) is one of the critical signaling molecules involved in osteolysis and bone metastasis. However, the regulation and functional significance of RANKL at the TB-interface in tumor-induced osteolysis remains unclear. In this report, we examined the role of tumor-stromal interaction in the regulation of RANKL expression and its functional significance in tumor-induced osteolysis. Using a novel mammary tumor model, we identified that RANKL expression was upregulated at the TB-interface as compared to the tumor alone area. We demonstrate increased generation of sRANKL at the TB-interface, which is associated with tumor-induced osteolysis. The ratio of RANKL to osteoprotegrin (OPG), a decoy receptor for RANKL, at the TB-interface was also increased. Targeting RANKL expression with antisense oligonucleotides (RANKL-ASO), significantly abrogated tumor-induced osteolysis, decreased RANKL expression and the RANKL:OPG ratio at the TB-interface. Together, these results demonstrate that upregulation of RANKL expression and sRANKL generation at the TB-interface potentiates tumor-induced osteolysis.
骨微环境通过肿瘤-骨(TB)相互作用在肿瘤诱导的骨溶解和溶骨性转移中起关键作用。核因子κB受体激活剂(RANK)配体(RANKL)是参与骨溶解和骨转移的关键信号分子之一。然而,RANKL在肿瘤诱导的骨溶解的TB界面处的调节及其功能意义仍不清楚。在本报告中,我们研究了肿瘤-基质相互作用在RANKL表达调节中的作用及其在肿瘤诱导的骨溶解中的功能意义。使用一种新型乳腺肿瘤模型,我们发现与仅肿瘤区域相比,TB界面处的RANKL表达上调。我们证明TB界面处sRANKL的生成增加,这与肿瘤诱导的骨溶解有关。TB界面处RANKL与骨保护素(OPG,RANKL的诱饵受体)的比例也增加。用反义寡核苷酸(RANKL-ASO)靶向RANKL表达,可显著消除肿瘤诱导的骨溶解,降低TB界面处的RANKL表达和RANKL:OPG比例。总之,这些结果表明TB界面处RANKL表达和sRANKL生成的上调增强了肿瘤诱导的骨溶解。