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CCR7 is a chemokine receptor on immune cells that controls the migration of T cells and dendritic cells into lymph nodes, playing a central role in the immune response.
CCR7 is a chemokine receptor on immune cells that controls the migration of T cells and dendritic cells into lymph nodes, playing a central role in the immune response.
CCR7 (CC Chemokine Receptor Type 7, also known as CD197) is a G protein-coupled receptor expressed on the surface of various immune cells. It belongs to the family of CC chemokine receptors and specifically binds the chemokines CCL19 and CCL21. This binding controls the targeted migration of immune cells into secondary lymphoid organs such as lymph nodes and the spleen.
CCR7 plays a central role in the organization and regulation of the immune system. Its key functions include:
When the immune system encounters pathogens or foreign substances, dendritic cells become activated and increase their CCR7 expression. This causes them to migrate to the nearest lymph nodes, where they present the captured antigens to naive T cells. This process is essential for initiating an adaptive immune response. Additionally, CCR7 influences the differentiation of T helper cells and the formation of memory T cells, which enable a rapid immune reaction upon re-infection.
CCR7 has gained particular importance in oncology. Many tumor cells express CCR7 and use this receptor to migrate into lymph nodes in a manner similar to immune cells. This promotes lymphogenic metastasis in various cancers, including:
High CCR7 expression on tumor cells often correlates with a less favorable prognosis and increased lymph node metastasis.
Alterations in CCR7 expression or function are associated with various autoimmune diseases, including rheumatoid arthritis, multiple sclerosis, and systemic lupus erythematosus. Disrupted CCR7-mediated trafficking of regulatory T cells can contribute to uncontrolled inflammation.
CCR7 is relevant to the immune response against various pathogens. In chronic infections such as HIV, CCR7 expression on T cells can be altered, affecting the quality of the immune response.
Due to its central role in immune cell migration and tumor metastasis, CCR7 is a promising therapeutic target for novel treatment approaches:
In laboratory diagnostics and research, CCR7 (also referred to as CD197) serves as a marker for characterizing T cell subpopulations. The distinction between naive T cells (CCR7+/CD45RA+), central memory T cells (CCR7+/CD45RA-), and effector memory T cells (CCR7-/CD45RA-) is important for understanding immune deficiencies and the effectiveness of immunotherapies.
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