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首页> 外文期刊>BMC Cancer >Systemic neutralization of IL-17A significantly reduces breast cancer associated metastasis in arthritic mice by reducing CXCL12/SDF-1 expression in the metastatic niches
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Systemic neutralization of IL-17A significantly reduces breast cancer associated metastasis in arthritic mice by reducing CXCL12/SDF-1 expression in the metastatic niches

机译:IL-17A的系统中和作用通过减少转移性小生境中的CXCL12 / SDF-1表达,显着减少了关节炎小鼠的乳腺癌相关转移

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Background IL-17A is a pro-inflammatory cytokine that is normally associated with autoimmune arthritis and other pro-inflammatory conditions. Recently, IL-17A has emerged as a critical factor in enhancing breast cancer (BC)-associated metastases. We generated immune competent arthritic mouse models that develop spontaneous BC-associated bone and lung metastasis. Using these models, we have previously shown that neutralization of IL-17A resulted in significant reduction in metastasis. However, the underlying mechanism/s remains unknown. Methods We have utilized two previously published mouse models for this study: 1) the pro-arthritic mouse model (designated SKG) injected with metastatic BC cell line (4T1) in the mammary fat pad, and 2) the PyV MT mice that develop spontaneous mammary gland tumors injected with type II collagen to induce autoimmune arthritis. Mice were treated with anti-IL-17A neutralizing antibody and monitored for metastasis and assessed for pro-inflammatory cytokines and chemokines associated with BC-associated metastasis. Results We first corroborate our previous finding that in vivo neutralization of IL-17A significantly reduced metastasis to the bones and lungs in both models. Next, we report that treatment with anti-IL17A antibody significantly reduced the expression of a key chemokine, CXCL12 (also known as stromal derived factor-1 (SDF?-?1)) in the bones and lungs of treated mice. CXCL12 is a ligand for CXCR4 (expressed on BC cells) and their interaction is known to be critical for metastasis. Interestingly, levels of CXCR4 in the tumor remained unchanged with treatment. Consequently, protein lysates derived from the bones and lungs of treated mice were significantly less chemotactic for the BC cells than lysates from untreated mice; and addition of exogenous SDF-1 to the lysates from treated mice completely restored BC cell migration. In addition, cytokines such as IL-6 and M-CSF were significantly reduced in the lung and bone lysates following treatment. The data presented suggests that systemic neutralization of IL-17A can block the CXCR4/SDF-1 signaling pathway by reducing the expression of SDF-1 in the metastatic niches and significantly reducing metastasis in both mouse models. Conclusion In our model, neutralization of IL-17A regulates SDF-1 expression in the metastatic niches either directly or indirectly via reducing levels of IL-6 and M-CSF.
机译:背景技术IL-17A是促炎细胞因子,通常与自身免疫性关节炎和其他促炎性疾病相关。最近,IL-17A已成为增强乳腺癌(BC)相关转移的关键因素。我们生成了具有免疫能力的关节炎小鼠模型,该模型发展出自发的BC相关骨和肺转移。使用这些模型,我们先前已证明IL-17A的中和可导致转移明显减少。然而,基本机制仍然未知。方法我们已经使用了两个先前发表的小鼠模型进行本研究:1)在乳腺脂肪垫中注射了转移性BC细胞系(4T1)的前关节炎小鼠模型(指定为SKG),以及2)自发发育的PyV MT小鼠注射II型胶原的乳腺肿瘤可诱发自身免疫性关节炎。用抗IL-17A中和抗体治疗小鼠,监测其转移并评估与BC相关的转移相关的促炎性细胞因子和趋化因子。结果我们首先证实了我们先前的发现,即在两种模型中,体内中和IL-17A均显着降低了向骨骼和肺部的转移。接下来,我们报道了用抗IL17A抗体治疗可显着降低治疗小鼠的骨骼和肺中关键趋化因子CXCL12(也称为基质衍生因子-1(SDFα-β1))的表达。 CXCL12是CXCR4(在BC细胞上表达)的配体,已知它们的相互作用对转移至关重要。有趣的是,肿瘤中CXCR4的水平在治疗后保持不变。因此,与未经处理的小鼠的裂解物相比,来自经处理的小鼠的骨骼和肺部的蛋白质裂解物对BC细胞的趋化性显着降低。在处理过的小鼠的裂解物中添加外源SDF-1可以完全恢复BC细胞迁移。另外,治疗后,肺和骨裂解物中的IL-6和M-CSF等细胞因子明显减少。呈现的数据表明,IL-17A的系统中和作用可以通过减少转移性小生境中SDF-1的表达并显着减少两种小鼠模型的转移来阻断CXCR4 / SDF-1信号传导途径。结论在我们的模型中,IL-17A的中和通过降低IL-6和M-CSF的水平直接或间接调节转移小生境中SDF-1的表达。

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