Figure 6
Figure 6. T cell responses in CCR2−/− mice. (A) mRNA expression of iNOS and ARG1 in the tumor of WT or CCR2−/− mice was analyzed by RT-PCR. (B) Percentage of CD4+ cells, CD8+ cells, and NK1.1+ cells in CD45+ leukocytes from tumors of WT or CCR2−/− mice was analyzed by flow cytometry. (C) Number of CD4+ cells, CD8+ cells, and Foxp3+CD4+ cells in the draining LNs of WT or CCR2−/− mice was analyzed by flow cytometry. (D) Ex vivo IFN-γ production of CD8 T cells from tumor-draining LNs and nondraining LNs of WT or CCR2−/− mice was analyzed by flow cytometry. Dotted line indicates no-stimulation background. Graphs represent the mean (± SD) of 3 to 5 mice. *P < .05; **P < .01. Representative of 2 independent experiments.

T cell responses in CCR2−/− mice. (A) mRNA expression of iNOS and ARG1 in the tumor of WT or CCR2−/− mice was analyzed by RT-PCR. (B) Percentage of CD4+ cells, CD8+ cells, and NK1.1+ cells in CD45+ leukocytes from tumors of WT or CCR2−/− mice was analyzed by flow cytometry. (C) Number of CD4+ cells, CD8+ cells, and Foxp3+CD4+ cells in the draining LNs of WT or CCR2−/− mice was analyzed by flow cytometry. (D) Ex vivo IFN-γ production of CD8 T cells from tumor-draining LNs and nondraining LNs of WT or CCR2−/− mice was analyzed by flow cytometry. Dotted line indicates no-stimulation background. Graphs represent the mean (± SD) of 3 to 5 mice. *P < .05; **P < .01. Representative of 2 independent experiments.

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