Enhanced Tumor Metastasis in Response to Blockade of the Chemokine Receptor CXCR6 Is Overcome by NKT Cell Activation

转移 免疫监视 趋化因子 细胞因子 癌症研究 免疫学 CXCL16型 自然杀伤性T细胞 刘易斯肺癌 T细胞 生物 医学 趋化因子受体 癌症 免疫系统 内科学
作者
Robyn Cullen,Elitza S. Germanov,Takeshi Shimaoka,Brent Johnston
出处
期刊:Journal of Immunology [American Association of Immunologists]
卷期号:183 (9): 5807-5815 被引量:55
标识
DOI:10.4049/jimmunol.0803520
摘要

Abstract Invariant NKT (iNKT) cells can induce potent antitumor responses in vivo. However, the mechanisms that regulate the effects of iNKT cells are unclear. The chemokine receptor CXCR6, and its ligand CXCL16, have been shown to play critical roles in iNKT cell homeostasis and activation. Thus we investigated the role of CXCR6 in protection against experimental metastasis of B16-F10 melanoma (B16) and Lewis lung carcinoma (LLC) cells to the liver and lungs. Wild-type and CXCR6−/− mice exhibited no differences in tumor cell metastasis to the lungs. However, metastasis of LLC and B16 tumor cells to the liver was enhanced in CXCR6−/− mice. Liver metastasis was also increased in wild-type mice treated with a CXCL16 neutralizing Ab. As Ab treatments did not alter iNKT cell numbers, this implicates a direct role for CXCR6/CXCL16 in regulating antitumor immunity. Cytokine induction was significantly attenuated in CXCR6−/− mice upon systemic iNKT cell activation with the glycolipid Ags α-galactosylceramide (α-GalCer), α-C-GalCer (a Th1 polarizing derivative), or OCH (a Th2 polarizing derivative). Despite differences in the levels of cytokine production, liver and lung metastasis were inhibited significantly in both wild-type and CXCR6−/− mice treated with glycolipids. Single doses of α-GalCer, α-C-GalCer, or OCH were sufficient to prevent liver metastasis and subsequent doses failed to elicit optimal cytokine responses. Our findings implicate a role for CXCR6 in natural immunosurveillance against liver metastasis. However, CXCR6 deficiency could be overcome by systemic iNKT cell activation, demonstrating that even suboptimal iNKT cell activation can protect against metastasis.
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