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recombinant human il 10 protein r d systems  (R&D Systems)


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    R&D Systems recombinant human il 10 protein r d systems
    Recombinant Human Il 10 Protein R D Systems, supplied by R&D Systems, used in various techniques. Bioz Stars score: 94/100, based on 172 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
    https://www.bioz.com/product/recombinant+human+il+10+protein+r+d+system/Recombinant+Human+IL-10+Protein/pm41416928-35-54-58
    Average 94 stars, based on 172 article reviews
    recombinant human il 10 protein r d systems - by Bioz Stars, 2026-09
    94/100 stars

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    Recombinant:

    Article Title: Testosterone and estradiol reduce inflammation of human macrophages induced by anti-SARS-CoV-2 IgG.
    Article Snippet: .. Reagent or resource Source Identifier Antibodies Recombinant monoclonal SARS-CoV-2 IgG1 (COVA1-18 WT) Brouwer et al. [28] https://doi.org/10.1126/ science.abc5902 Human TNF-alpha antibody Bio-Techne MAB610 Human TNF-alpha biotinylated antibody Bio-Techne BAF210 Streptavidin poly-HRP Sanquin M2032 eBioscience Fixable Viability Dye eFluor 780 ThermoFisher Cat#130-096-491 Purified anti-human CD64 antibody BioLegend Cat#305002 Anti-human CD32 antibody, clone IV.3 Stemcell Cat#60012FI PE-CF594 mouse anti-human CD16 BD Biosciences Cat#562293 Anti-human CD32B/C antibody BioLegend Cat# 398307 Chemicals, peptides, and recombinant proteins Human M-CSF Miltenyi Biotec Cat#130-096-491 Recombinant human IL-10 protein R&D System s Cat# 217-IL-025/CF Recombinant SARS-CoV2-spike Wuhan Hu-1 protein T.Caniels et al. [30] GenBank accession MN908947.3; https://doi.org/10.1126/ sciadv.abj5365 Human testosterone Merck 86500-5G Human estradiol Selleckchem S1709 Polyinosinic:polycytidylic acid (poly(I:C)) Sigma-Aldrich Cat#P1530 Critical commercial assays CD14 MicroBeads, human Miltenyi Biotec Cat#130-050-201 MSD V-PLEX human cytokine kits Meso Scale Discovery K15049D, K15047D Software and algorithms GraphPad Prism version 9.4.0 GraphPad Software www.graphpad.com FlowJo version version 10.9 FlowJo Software www.flowjo.com stituted in cell culture media. ..

    Purification:

    Article Title: Testosterone and estradiol reduce inflammation of human macrophages induced by anti-SARS-CoV-2 IgG.
    Article Snippet: .. Reagent or resource Source Identifier Antibodies Recombinant monoclonal SARS-CoV-2 IgG1 (COVA1-18 WT) Brouwer et al. [28] https://doi.org/10.1126/ science.abc5902 Human TNF-alpha antibody Bio-Techne MAB610 Human TNF-alpha biotinylated antibody Bio-Techne BAF210 Streptavidin poly-HRP Sanquin M2032 eBioscience Fixable Viability Dye eFluor 780 ThermoFisher Cat#130-096-491 Purified anti-human CD64 antibody BioLegend Cat#305002 Anti-human CD32 antibody, clone IV.3 Stemcell Cat#60012FI PE-CF594 mouse anti-human CD16 BD Biosciences Cat#562293 Anti-human CD32B/C antibody BioLegend Cat# 398307 Chemicals, peptides, and recombinant proteins Human M-CSF Miltenyi Biotec Cat#130-096-491 Recombinant human IL-10 protein R&D System s Cat# 217-IL-025/CF Recombinant SARS-CoV2-spike Wuhan Hu-1 protein T.Caniels et al. [30] GenBank accession MN908947.3; https://doi.org/10.1126/ sciadv.abj5365 Human testosterone Merck 86500-5G Human estradiol Selleckchem S1709 Polyinosinic:polycytidylic acid (poly(I:C)) Sigma-Aldrich Cat#P1530 Critical commercial assays CD14 MicroBeads, human Miltenyi Biotec Cat#130-050-201 MSD V-PLEX human cytokine kits Meso Scale Discovery K15049D, K15047D Software and algorithms GraphPad Prism version 9.4.0 GraphPad Software www.graphpad.com FlowJo version version 10.9 FlowJo Software www.flowjo.com stituted in cell culture media. ..

    Software:

    Article Title: Testosterone and estradiol reduce inflammation of human macrophages induced by anti-SARS-CoV-2 IgG.
    Article Snippet: .. Reagent or resource Source Identifier Antibodies Recombinant monoclonal SARS-CoV-2 IgG1 (COVA1-18 WT) Brouwer et al. [28] https://doi.org/10.1126/ science.abc5902 Human TNF-alpha antibody Bio-Techne MAB610 Human TNF-alpha biotinylated antibody Bio-Techne BAF210 Streptavidin poly-HRP Sanquin M2032 eBioscience Fixable Viability Dye eFluor 780 ThermoFisher Cat#130-096-491 Purified anti-human CD64 antibody BioLegend Cat#305002 Anti-human CD32 antibody, clone IV.3 Stemcell Cat#60012FI PE-CF594 mouse anti-human CD16 BD Biosciences Cat#562293 Anti-human CD32B/C antibody BioLegend Cat# 398307 Chemicals, peptides, and recombinant proteins Human M-CSF Miltenyi Biotec Cat#130-096-491 Recombinant human IL-10 protein R&D System s Cat# 217-IL-025/CF Recombinant SARS-CoV2-spike Wuhan Hu-1 protein T.Caniels et al. [30] GenBank accession MN908947.3; https://doi.org/10.1126/ sciadv.abj5365 Human testosterone Merck 86500-5G Human estradiol Selleckchem S1709 Polyinosinic:polycytidylic acid (poly(I:C)) Sigma-Aldrich Cat#P1530 Critical commercial assays CD14 MicroBeads, human Miltenyi Biotec Cat#130-050-201 MSD V-PLEX human cytokine kits Meso Scale Discovery K15049D, K15047D Software and algorithms GraphPad Prism version 9.4.0 GraphPad Software www.graphpad.com FlowJo version version 10.9 FlowJo Software www.flowjo.com stituted in cell culture media. ..

    Cell Culture:

    Article Title: Testosterone and estradiol reduce inflammation of human macrophages induced by anti-SARS-CoV-2 IgG.
    Article Snippet: .. Reagent or resource Source Identifier Antibodies Recombinant monoclonal SARS-CoV-2 IgG1 (COVA1-18 WT) Brouwer et al. [28] https://doi.org/10.1126/ science.abc5902 Human TNF-alpha antibody Bio-Techne MAB610 Human TNF-alpha biotinylated antibody Bio-Techne BAF210 Streptavidin poly-HRP Sanquin M2032 eBioscience Fixable Viability Dye eFluor 780 ThermoFisher Cat#130-096-491 Purified anti-human CD64 antibody BioLegend Cat#305002 Anti-human CD32 antibody, clone IV.3 Stemcell Cat#60012FI PE-CF594 mouse anti-human CD16 BD Biosciences Cat#562293 Anti-human CD32B/C antibody BioLegend Cat# 398307 Chemicals, peptides, and recombinant proteins Human M-CSF Miltenyi Biotec Cat#130-096-491 Recombinant human IL-10 protein R&D System s Cat# 217-IL-025/CF Recombinant SARS-CoV2-spike Wuhan Hu-1 protein T.Caniels et al. [30] GenBank accession MN908947.3; https://doi.org/10.1126/ sciadv.abj5365 Human testosterone Merck 86500-5G Human estradiol Selleckchem S1709 Polyinosinic:polycytidylic acid (poly(I:C)) Sigma-Aldrich Cat#P1530 Critical commercial assays CD14 MicroBeads, human Miltenyi Biotec Cat#130-050-201 MSD V-PLEX human cytokine kits Meso Scale Discovery K15049D, K15047D Software and algorithms GraphPad Prism version 9.4.0 GraphPad Software www.graphpad.com FlowJo version version 10.9 FlowJo Software www.flowjo.com stituted in cell culture media. ..



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    Figure 3. AHR activation is necessary for IL-10-induced tolerogenic functions in tolDCs generated in vitro (A) Short-term MLR experimental design. DC stimulation of allogeneic CD4+ T cells for 5 days induces T cell proliferation, while DC-10 stimulation induces T cell hypo-proliferation. (B) Left, representative plots of proliferation dye dilution (left plots) and CD25 and HLA-DR expression (right plots). Right, percentages of proliferating (top) and CD25+HLA-DR+ activated (bottom) cells after co-culture of total (left graphs, n = 12) and naive (right graphs, n = 7) CD4+ T cells with DC-10s, AHRinhDC-10s, and DC-10s in the presence of AHR inhibitor, relative to the results obtained with donor-matched DC-stimulated T, set at 100% (dotted line). (C) <t>IFNg</t> production by CD4+ T cells (total and naive) stimulated with DC-10s, AHRinhDC-10s, and DC-10s in presence of AHR inhibitor, expressed as ratios to the IFNg production of T cells stimulated by donor-matched DCs, set at 1 (dotted line) (n = 11). (D) Long-term and secondary (II) MLR experimental design. DC stimulation of allogeneic CD4+ T cells for 10 days induces T cell proliferation, DC-10 stimulation induces T cell hypo-proliferation and generation of Tr1 cells. II MLR: upon re-stimulation with mature DCs from the same donor used in priming, DC-primed T cells proliferate, while DC-10-primed T cells are anergic and produce IL-10. (E) Long-term MLR. Left, percentage of CD4+ cells proliferating (Ki67+; top) and of Tr1 cells (CD49b+LAG3+; bottom) upon stimulation with DC-10s, AHRinhDC- 10s, and DCs (n = 7). Right, representative FC plots. (F) II MLR. Top, percentage of proliferation of T cells primed with the indicated DCs and restimulated with mature DCs from the same donor used in priming, expressed as (% proliferating cells/% proliferating cells in the donor-matched T cells primed with DCs) (n = 7); 0% = no proliferation; 100% = proliferated as DC- stimulated. Bottom, IL-10 and IFNg amounts in culture supernatants (n = 6). p values by Wilcoxon matched pairs test. See Figure S3.
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    Figure 3. AHR activation is necessary for IL-10-induced tolerogenic functions in tolDCs generated in vitro (A) Short-term MLR experimental design. DC stimulation of allogeneic CD4+ T cells for 5 days induces T cell proliferation, while DC-10 stimulation induces T cell hypo-proliferation. (B) Left, representative plots of proliferation dye dilution (left plots) and CD25 and HLA-DR expression (right plots). Right, percentages of proliferating (top) and CD25+HLA-DR+ activated (bottom) cells after co-culture of total (left graphs, n = 12) and naive (right graphs, n = 7) CD4+ T cells with DC-10s, AHRinhDC-10s, and DC-10s in the presence of AHR inhibitor, relative to the results obtained with donor-matched DC-stimulated T, set at 100% (dotted line). (C) IFNg production by CD4+ T cells (total and naive) stimulated with DC-10s, AHRinhDC-10s, and DC-10s in presence of AHR inhibitor, expressed as ratios to the IFNg production of T cells stimulated by donor-matched DCs, set at 1 (dotted line) (n = 11). (D) Long-term and secondary (II) MLR experimental design. DC stimulation of allogeneic CD4+ T cells for 10 days induces T cell proliferation, DC-10 stimulation induces T cell hypo-proliferation and generation of Tr1 cells. II MLR: upon re-stimulation with mature DCs from the same donor used in priming, DC-primed T cells proliferate, while DC-10-primed T cells are anergic and produce IL-10. (E) Long-term MLR. Left, percentage of CD4+ cells proliferating (Ki67+; top) and of Tr1 cells (CD49b+LAG3+; bottom) upon stimulation with DC-10s, AHRinhDC- 10s, and DCs (n = 7). Right, representative FC plots. (F) II MLR. Top, percentage of proliferation of T cells primed with the indicated DCs and restimulated with mature DCs from the same donor used in priming, expressed as (% proliferating cells/% proliferating cells in the donor-matched T cells primed with DCs) (n = 7); 0% = no proliferation; 100% = proliferated as DC- stimulated. Bottom, IL-10 and IFNg amounts in culture supernatants (n = 6). p values by Wilcoxon matched pairs test. See Figure S3.

    Journal: Cell reports

    Article Title: Aryl hydrocarbon receptor activity downstream of IL-10 signaling is required to promote regulatory functions in human dendritic cells.

    doi: 10.1016/j.celrep.2023.112193

    Figure Lengend Snippet: Figure 3. AHR activation is necessary for IL-10-induced tolerogenic functions in tolDCs generated in vitro (A) Short-term MLR experimental design. DC stimulation of allogeneic CD4+ T cells for 5 days induces T cell proliferation, while DC-10 stimulation induces T cell hypo-proliferation. (B) Left, representative plots of proliferation dye dilution (left plots) and CD25 and HLA-DR expression (right plots). Right, percentages of proliferating (top) and CD25+HLA-DR+ activated (bottom) cells after co-culture of total (left graphs, n = 12) and naive (right graphs, n = 7) CD4+ T cells with DC-10s, AHRinhDC-10s, and DC-10s in the presence of AHR inhibitor, relative to the results obtained with donor-matched DC-stimulated T, set at 100% (dotted line). (C) IFNg production by CD4+ T cells (total and naive) stimulated with DC-10s, AHRinhDC-10s, and DC-10s in presence of AHR inhibitor, expressed as ratios to the IFNg production of T cells stimulated by donor-matched DCs, set at 1 (dotted line) (n = 11). (D) Long-term and secondary (II) MLR experimental design. DC stimulation of allogeneic CD4+ T cells for 10 days induces T cell proliferation, DC-10 stimulation induces T cell hypo-proliferation and generation of Tr1 cells. II MLR: upon re-stimulation with mature DCs from the same donor used in priming, DC-primed T cells proliferate, while DC-10-primed T cells are anergic and produce IL-10. (E) Long-term MLR. Left, percentage of CD4+ cells proliferating (Ki67+; top) and of Tr1 cells (CD49b+LAG3+; bottom) upon stimulation with DC-10s, AHRinhDC- 10s, and DCs (n = 7). Right, representative FC plots. (F) II MLR. Top, percentage of proliferation of T cells primed with the indicated DCs and restimulated with mature DCs from the same donor used in priming, expressed as (% proliferating cells/% proliferating cells in the donor-matched T cells primed with DCs) (n = 7); 0% = no proliferation; 100% = proliferated as DC- stimulated. Bottom, IL-10 and IFNg amounts in culture supernatants (n = 6). p values by Wilcoxon matched pairs test. See Figure S3.

    Article Snippet: Coating Ab Clone Brand Concentration Purified Rat Anti-Human and Viral IL-10 JES3-9D7 BD Biosciences 1 mg/mL Purified Mouse Anti-Human IFNg NIB42 BD Biosciences 1 mg/mL Detection Ab Clone Brand Concentration Biotin Anti-Human and Viral IL-10 JES3-12G8 BD Biosciences 1 mg/mL Biotin Anti-Human IFNg 4S.B3 BD Biosciences 1 mg/mL Standard Curve Brand Concentration (max:min) Recombinant Human IL-10 protein – CellGenix 2000 : 15,625 pg/mL Recombinant Human IFNg – R&D Systems 2000 : 15,625 pg/mL Quantification of signal was performed using Streptavidin covalently coupled to horseradish peroxidase (strep-POD) and Tetramethylbenzidine (TMB) substrate, and optical density (OD) was read at 640nm on a Multiskan GO (Thermo Fisher Scientific) and analyzed by SkanIt 4.1.

    Techniques: Activation Assay, Generated, In Vitro, Expressing, Co-Culture Assay