CCL21‐Ser expression in melanoma cells recruits CCR7+ naïve T cells to tumor tissues and promotes tumor growth

Author:

Miyamoto Megumi1,Kawato Yuki2,Fujie Ryonosuke1,Kurowarabe Kaoru1,Fujiwara Kakeru1,Nobusawa Reika1,Hayashi Ryota1,Iida Kei12,Ohigashi Izumi3,Hayasaka Haruko124ORCID

Affiliation:

1. Department of Science, Graduate School of Science and Engineering Kindai University Osaka Japan

2. Faculty of Science and Engineering Kindai University Osaka Japan

3. Division of Experimental Immunology, Institute of Advanced Medical Sciences University of Tokushima Tokushima Japan

4. Research Institute for Science and Technology Kindai University Osaka Japan

Abstract

AbstractCCL21‐Ser, a chemokine encoded by the Ccl21a gene, is constitutively expressed in the thymic epithelial cells and stromal cells of secondary lymphoid organs. It regulates immune cell migration and survival through its receptor CCR7. Herein, using CCL21‐Ser‐expressing melanoma cells and the Ccl21a‐deficient mice, we demonstrated the functional role of cancer cell‐derived CCL21‐Ser in melanoma growth in vivo. The B16‐F10 tumor growth was significantly decreased in Ccl21a‐deficient mice compared with that in wild‐type mice, indicating that host‐derived CCL21‐Ser contributes to melanoma proliferation in vivo. In Ccl21a‐deficient mice, tumor growth of melanoma cells expressing CCL21‐Ser was significantly enhanced, suggesting that CCL21‐Ser from melanoma cells promotes tumor growth in the absence of host‐derived CCL21‐Ser. The increase in tumor growth was associated with an increase in the CCR7+ CD62L+ T cell frequency in the tumor tissue but was inversely correlated with Treg frequency, suggesting that naïve T cells primarily promote tumor growth. Adoptive transfer experiments demonstrated that naïve T cells are preferentially recruited from the blood into tumors with melanoma cell‐derived CCL21‐Ser expression. These results suggest that CCL21‐Ser from melanoma cells promotes the infiltration of CCR7+ naïve T cells into the tumor tissues and creates a tumor microenvironment favorable for melanoma growth.

Publisher

Wiley

Subject

Cancer Research,Oncology,General Medicine

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