10 Bilder zum Thema "pd 1" bei ClipDealer

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Immune checkpoint inhibitors in cancer treatment, 3D illustration. Inhibitors of PD-1 receptor and PD-L1 prevent the tumour cell from binding to PD-1 and enable the T cell to remain active
Molecular model of Pembrolizumab, a humanized antibody used in immunotherapy of cancer, 3D illustration. It targets the PD-1 receptor of lymphocytes
Cancer cells express PD-L1 (orange) proteins on their surface to trick the immune system. The interaction of PD-L1 with PD-1 of  T-cells leads to a down-regulation of T-cells. The antibody (yellow) blocks this interaction.
Immune checkpoint inhibitors in cancer treatment, 3D illustration. Inhibitors of PD-1 receptor and PD-L1 prevent the tumour cell from binding to PD-1 and enable the T cell to remain active
Molecular model of Pembrolizumab, a humanized antibody used in immunotherapy of cancer, 3D illustration. It targets the PD-1 receptor of lymphocytes
Interactions of MHC-II with the T-cell receptor and CD4  and B7-1 with CD-28 activates T-cells while the interactions of P7-1 with CTLA-4  and PD-L1  with PD-1 deactivates T-cells.
PD-1  (red) extends from the surface of a T-cell and interacts with the ligand protein PD-L1 (yellow) from a antigen presenting cell. Although the T-cell has been activated through the interaction of  a T-cell receptor (blue) and a MHC protein (viole
Interaction of MHC-II (red) with the T-cell receptor (blue) and CD4 (light blue) and B7-1 (orange) with CD-28 (dark blue) activates T-cells while the interaction of P7-1 with CTLA-4 (violett) and PD-L1 (yellow) with PD-1 deactivates T-cells
Molecular model of Pembrolizumab, a humanized antibody used in immunotherapy of cancer, 3D illustration. It targets the PD-1 receptor of lymphocytes
Immunologically active proteins on a T-cell. TCR (blue), CD-4 (light blue), CD-28 (dark blue),  PD-1 (magenta), CTLA-4 (violet), Ca-channel (dark violet). The T-cell receptor, CD-4 and CD-28 activate T-cells, while PD-1 and CTLA-4 inhibit the activat

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