Department of Surgery, LD MacLean Surgical Research Laboratories, Montreal, QC, Canada.
Meakins-Christie Laboratories, Department of Medicine, McGill University and the McGill University Health Center, Montreal, QC, Canada.
Int J Cancer. 2017 May 15;140(10):2321-2330. doi: 10.1002/ijc.30635. Epub 2017 Mar 2.
Despite advances in cancer treatment, metastasis remains today the main cause of cancer death. Local control through complete surgical resection of the primary tumor continues to be a key principle in cancer treatment. However, surgical interventions themselves lead to adverse oncologic outcomes and are associated with significantly increased rates of metastasis. Neutrophils through release of neutrophil extracellular traps (NETs) in response to infections were shown to be able to capture circulating cancer cells, and in doing so, support the development of metastatic disease. To be able to intervene on this process, understanding the exact molecular nature of these mechanisms is crucial. We therefore hypothesize and demonstrate that β1-integrin is an important factor mediating the interactions between circulating tumor cells and NETs. We show that β1-integrin expression on both cancer cells and NETs is important for the adhesion of circulating tumor cells to NETs both in vitro and in vivo. Using a murine model of intra-abdominal sepsis to mimic the postoperative inflammatory environment, we show that β1-integrin expression is upregulated in the context of inflammation in vivo. Ultimately, we show that this increased early cancer cell adhesion to NETs in vivo and this effect is abrogated when mice are administered DNAse 1. Our data therefore sheds light on the first molecular mechanism by which NETs can trap circulating tumor cells (CTCs), broadening our understanding of this process.
尽管癌症治疗取得了进展,但转移仍然是癌症死亡的主要原因。通过完全手术切除原发性肿瘤来实现局部控制,仍然是癌症治疗的关键原则。然而,手术干预本身会导致不良的肿瘤学结果,并与转移率的显著增加相关。中性粒细胞通过释放中性粒细胞胞外诱捕网(NETs)来应对感染,被证明能够捕获循环中的癌细胞,并在此过程中支持转移性疾病的发展。为了能够干预这一过程,了解这些机制的确切分子性质至关重要。因此,我们假设并证明β1 整合素是介导循环肿瘤细胞与 NETs 相互作用的重要因素。我们表明,β1 整合素在癌细胞和 NETs 上的表达对于循环肿瘤细胞与 NETs 的体外和体内黏附都很重要。使用腹腔内脓毒症的小鼠模型来模拟术后炎症环境,我们表明β1 整合素的表达在体内炎症环境中上调。最终,我们表明,这种早期循环肿瘤细胞与 NETs 的黏附增加,并且当给小鼠施用 DNAse 1 时,这种效应被消除。因此,我们的数据揭示了 NETs 捕获循环肿瘤细胞(CTC)的第一个分子机制,拓宽了我们对这一过程的理解。