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Gene expression data of CD8+ T cells from C57BL/6 mouse

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https://www.ncbi.nlm.nih.gov/geo/query/acc.cgi?acc=GSE180291
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Anti-CD4 monoclonal antibody, a prominent immunomodulatory agent, elicits robust anti-tumor immunity in various cancers by increasing tumor-infiltrating lymphocytes and promoting CD8+ T cell reactivity against tumor cell-derived antigens. We used microarrays to investigate anti-CD4-induced gene-expression change of CD8+ T cells. The model of mouse melanoma (B16F10) was used to study anti-CD4-induced change of endogenous CD8+ T cells. We designed a regimen that utilizes cyclophosphamide treatment, adoptive transfer of tumor-specific T cells, and anti-CD4 treatment, a combination that synergistically increases the efficacy of adoptive T cell therapy. Three days after the B16F10 challenge, C57BL/6 mice sequentially received cyclophosphamide, ex vivo-primed Pmel-1 cells (melanoma-specific TCR-transgenic CD8+ T cells), and IL-2. A transient treatment (on day 10, 17, and 24) of anti-CD4 started seven days after cyclophosphamide treatment. Twenty-five days after the tumor challenge, endogenous CD8+ T cells isolated from lymphoid tissues of the mice were subjected to microarray analysis. Two groups (5 mice each) received cyclophosphamide/Pmel-1 or cyclophosphamide/Pmel-1/anti-CD4. For each group, endogenous CD8+ T cells from five mice were pooled and used in the analysis.
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2021-09-29
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