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4 protocols using fitc anti mouse ifn γ

1

Intracellular Cytokine Staining for T-cell Analysis

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Intracellular cytokine staining was performed according to the manufacturer's protocol of the Mouse Foxp3 Buffer Set (BD Biosciences) and analyzed using FlowJo software. The following reagents were used: Pacific Blue anti-mouse CD4 (eBioscience), PE anti-mouse TCR-β (BD Biosciences), PE anti-mouse RORγt (eBioscience), FITC anti-mouse IFN-γ (eBioscience), and APC anti-mouse IL-17A (eBioscience).
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2

Characterization of Murine T Cell Subsets

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The cells derived from peripheral blood, spleen, and lung were stimulated with 100 µL of Roswell Park Memorial Institute (RPMI) 1640 (Hyclone, Logan, UT, USA) containing 10% fetal bovine serum (FBS) and 0.1 µg/mL phorbol myristate acetate plus 1 µg/mL ionomycin in 5 µg/mL Brefeldin A for 4 hours in 5% CO2 at 37 °C. After incubation, the cells were collected and washed twice with 200 µL staining buffer (1× PBS containing 1% FBS) at 400 ×g for 5 minutes.
For surface staining, the cells were labeled with the following antibodies: Percp/Cy5.5 anti-mouse CD45 (BioLegend, San Diego, CA, USA), APC-eFluor®780 anti-CD3e-mouse (eBioscience, San Diego, CA, USA), PE/Cy7 anti-mouse TCR γ/δ (BioLegend), BV421 anti-mouse TCR Vγ1.1 (BD Pharmingen, San Diego, CA, USA), APC anti-mouse TCR Vγ2 (BioLegend), and BV711 anti-mouse TCR Vγ3 (BD Pharmingen). For intracellular cytokines staining, the cells were fixed and permeabilized with BD Fixation/Permeabilization Kit, followed by staining with FITC anti-mouse IFN-γ (eBioscience) and PE anti-mouse IL-17A (eBioscience). Data were acquired on a BD FACSAria™ III (BD Biosciences, USA) and analyzed with FlowJo software (Tree Star, Ashland, OR, USA).
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3

Multiparameter Flow Cytometry Analysis

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Splenocytes and mesenteric lymph node cells were isolated and then stained with anti-mouse CD4-APC, CD8-PerCP-Cy5.5, CD19-PE, CD44-PE, CD62L-FITC, CD69-FITC, IL-7Rα-PE, CD138-APC, PSGL-1-APC, CXCR5-PE, PD-1-FITC, GL-7-FITC, CD95-PE-Cy7, B220-Alexa647 and NK1.1-FITC (eBioscience, San Diego, CA) antibodies for 15 min at 4°C. To assess intracellular cytokine levels, cells were differentiated for 5 days and then re-stimulated with Cell Stimulation Cocktail plus Protein Transport Inhibitors reagent (eBioscience) for 5 h. Then, the cells were fixed, permeabilized, and stained with anti-mouse IFN-γ-FITC, IL-4-PE, IL-17-APC, and IL-9-APC antibodies. Intracellular Foxp3 staining was performed using the Foxp3 Staining Kit (eBioscience). To determine the purity of isolated CD4+CD25 T cells, these cells were stained with anti-CD4 and anti-CD25, and followed by FACS analysis.
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4

Isolation and Differentiation of Murine Th17 and iTreg Cells

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Naïve CD4+ T cells were isolated from the spleen of WT or GPx1−/− × Cat−/− mice using a naive CD4+ T cell isolation kit (R&D Systems, Minneapolis, MN). For the induction of Th17 cell differentiation, 1×105 naïve CD4+ cells were stimulated with soluble anti-CD3e (1 µg/mL) and soluble anti-CD28 (1 µg/mL, e-Biosciences) in the presence of 2×104 CD11c+ DCs for 24 hours, and were cultured further for 2.5 days in the presence of TGF-β1 (5 ng/mL) and IL-6 (20 ng/mL) purchased from R&D Systems. For intracellular cytokine staining, cells were re-stimulated for 4 hr with PMA (25 ng/mL) and ionomycin (250 ng/mL, Sigma) in the presence of a protein trapsport inhibitor containing monensin (BD Biosciences). Then, the cells were harvested and stained for intracellular IL-17A and IFN-γ using a commercial kit for fixation and permeabilization ((BD Biosciences), anti-mouse IL-17A-PE (eBioscience) and anti-mouse IFN-γ-FITC (eBioscience). For the induction of iTreg differentiation, 1×105 naïve CD4+ cells were stimulated with plate-coated anti-CD3e (50 ng/well) and soluble anti-CD28 (1 µg/mL) in the presence of TGF-β1 (5 ng/ml) and human recombinant IL-2 (10 U/mL, BD Biosciences). After three days of culture, the cells were harvested for intranuclear staining for FoxP3, using a mouse regulatory T cell staining kit.
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