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Circulating tumor cells promote the metastatic colonization of disseminated carcinoma cells by inducing systemic inflammation

机译:循环中的肿瘤细胞通过诱导全身性炎症而促进已扩散癌细胞的转移定殖

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摘要

Circulating tumor cells (CTCs) have been studied well in the prognosis for malignant diseases as liquid biopsy, but their contribution to tumor metastasis is not clearly defined. Here we report that CTCs could promote the metastatic colonization of disseminated carcinoma cells by inducing systemic inflammation and neutrophil recruitment to pre-metastatic organs. Depletion of neutrophils in vivo could effectively abrogate the promoting effect of CTCs on tumor cell metastasis. In the presence of CTCs, the pro-tumor function of neutrophils was augmented, whereas the antitumor function of neutrophils was suppressed. Mechanically, CTC-derived ligands for TLR2 and TLR4 (TLR2/4) induced the systemic inflammation, thus increasing the production of proinflammatory cytokines such as G-CSF and IL-6 that could induce the conversion of neutrophil function from tumor-suppressing to tumor-promoting. Moreover, CTCs induced the production of endogenous TLR2/4 ligands such as S100A8, S100A9, and SAA3, which may amplify the stimulating effect that induces the expression of proinflammatory cytokines. The promoting effect of CTCs on tumor cell metastasis could be abrogated by suppressing inflammatory response with IL-37, an anti-inflammatory cytokine, or blocking CTC-derived ligands for TLR2/4. Identification of the metastatic axis of CTCs/systemic inflammationeutrophils may provide potential targets for preventing tumor cell metastasis.
机译:循环肿瘤细胞(CTCs)在作为液体活检的恶性疾病预后中已得到很好的研究,但尚不清楚其对肿瘤转移的作用。在这里我们报告说,CTCs可以通过诱导全身性炎症和嗜中性白细胞募集到转移前器官来促进弥散性癌细胞的转移定殖。体内中性粒细胞的消耗可以有效地消除四氯化碳对肿瘤细胞转移的促进作用。在存在四氯化碳的情况下,嗜中性粒细胞的促肿瘤功能增强,而嗜中性粒细胞的抗肿瘤功能被抑制。从机械上讲,TLC2和TLR4(TLR2 / 4)的CTC衍生配体诱导全身性炎症,从而增加促炎细胞因子(如G-CSF和IL-6)的产生,从而可能诱导嗜中性粒细胞功能从抑制肿瘤转变为抑制肿瘤-促进。此外,CTC诱导了内源性TLR2 / 4配体(例如S100A8,S100A9和SAA3)的产生,这可能会放大诱导促炎性细胞因子表达的刺激作用。可以通过用抗炎细胞因子IL-37抑制炎症反应或阻断CTC衍生的TLR2 / 4配体来消除CTC对肿瘤细胞转移的促进作用。 CTC /全身性炎症/中性粒细胞转移轴的鉴定可为预防肿瘤细胞转移提供潜在的靶标。

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