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anti cc chemokine ligand 17 ccl17 antibody  (R&D Systems)


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    Structured Review

    R&D Systems anti cc chemokine ligand 17 ccl17 antibody
    Anti Cc Chemokine Ligand 17 Ccl17 Antibody, supplied by R&D Systems, used in various techniques. Bioz Stars score: 90/100, based on 14 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
    https://www.bioz.com/product/anti+tarc+antibodies/Mouse+CCL17%2FTARC+Antibody/pm42009143-90-14-21
    Average 90 stars, based on 14 article reviews
    anti cc chemokine ligand 17 ccl17 antibody - by Bioz Stars, 2026-10
    90/100 stars

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    Staining:

    Article Title: Physiological effects of appropriate washing on xerotic skin.
    Article Snippet: .. See the T erm s and C onditions (https://onlinelibrary.w iley.com /term s-and-conditions) on W iley O nline L ibrary for rules of use; O A articles are governed by the applicable C reative C om m ons L icense 4 | TAKEUCHI et al. 2.5.4 | TARC level Immunohistological staining was performed with anti-TARC antibodies (mouse anti-human CCL17/TARC monoclonal antibody [MAB364; R&D Systems]). .. After staining, fluorescence images obtained with a fluorescence microscope (BZ-8100; Keyence) were analyzed in Adobe® Photoshop® CS (Adobe Inc.), and the mean luminous intensity (calculated from five visual fields) was used as the TARC stain intensity.7



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    a KEGG pathway enrichment of DEGs between FACS-sorted TNFR2 + and TNFR2 − CD4 + T cells from MPE ( n = 3). b , c Volcano plot ( b ) and heatmap ( c ) of DEGs related to the chemokine signaling pathway. d , e Flow cytometry histograms ( d ) and comparisons of chemokine receptor expression (CXCR6, CCR4 and CCR6) ( e ) on TNFR2 + T reg cells and TNFR2 − T reg cells ( n = 13). f Schematic of Transwell chemotaxis assay testing TNFR2 − T reg chemotaxis toward MPE supernatant (by Figdraw). g , h Transwell chemotaxis assay comparing TNFR2 + T reg frequencies between freshly isolated cells and cells that migrated toward MPE supernatant after 4 h incubation. i Concentrations of CXCL16, <t>CCL17,</t> CCL22 and CCL20 in MPE and PB were quantified using ELISA ( n = 16). j Schematic of chemotaxis assay to investigate the chemotatic axis to attract TNFR2 + T reg cells in MPE. k , l Flow cytometry histograms and comparisons of chemotaxis of TNFR2 + T reg cells in response to MPE in the presence of anti-CXCL16, anti-CCL17, anti-CCL22 or anti-CCL20 mAbs. Data shown in d , e , g – i , k and l are representative of at least three independent experiments (mean ± s.d.). Statistical analysis was performed using paired two-tailed Student’s t -test ( e and h ), Wilcoxon test ( i ) or one-way ANOVA ( l ). * P < 0.05, ** P < 0.01, **** P < 0.0001. ns not significant, mAbs monoclonal antibodies.
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    a KEGG pathway enrichment of DEGs between FACS-sorted TNFR2 + and TNFR2 − CD4 + T cells from MPE ( n = 3). b , c Volcano plot ( b ) and heatmap ( c ) of DEGs related to the chemokine signaling pathway. d , e Flow cytometry histograms ( d ) and comparisons of chemokine receptor expression (CXCR6, CCR4 and CCR6) ( e ) on TNFR2 + T reg cells and TNFR2 − T reg cells ( n = 13). f Schematic of Transwell chemotaxis assay testing TNFR2 − T reg chemotaxis toward MPE supernatant (by Figdraw). g , h Transwell chemotaxis assay comparing TNFR2 + T reg frequencies between freshly isolated cells and cells that migrated toward MPE supernatant after 4 h incubation. i Concentrations of CXCL16, <t>CCL17,</t> CCL22 and CCL20 in MPE and PB were quantified using ELISA ( n = 16). j Schematic of chemotaxis assay to investigate the chemotatic axis to attract TNFR2 + T reg cells in MPE. k , l Flow cytometry histograms and comparisons of chemotaxis of TNFR2 + T reg cells in response to MPE in the presence of anti-CXCL16, anti-CCL17, anti-CCL22 or anti-CCL20 mAbs. Data shown in d , e , g – i , k and l are representative of at least three independent experiments (mean ± s.d.). Statistical analysis was performed using paired two-tailed Student’s t -test ( e and h ), Wilcoxon test ( i ) or one-way ANOVA ( l ). * P < 0.05, ** P < 0.01, **** P < 0.0001. ns not significant, mAbs monoclonal antibodies.
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    a KEGG pathway enrichment of DEGs between FACS-sorted TNFR2 + and TNFR2 − CD4 + T cells from MPE ( n = 3). b , c Volcano plot ( b ) and heatmap ( c ) of DEGs related to the chemokine signaling pathway. d , e Flow cytometry histograms ( d ) and comparisons of chemokine receptor expression (CXCR6, CCR4 and CCR6) ( e ) on TNFR2 + T reg cells and TNFR2 − T reg cells ( n = 13). f Schematic of Transwell chemotaxis assay testing TNFR2 − T reg chemotaxis toward MPE supernatant (by Figdraw). g , h Transwell chemotaxis assay comparing TNFR2 + T reg frequencies between freshly isolated cells and cells that migrated toward MPE supernatant after 4 h incubation. i Concentrations of CXCL16, <t>CCL17,</t> CCL22 and CCL20 in MPE and PB were quantified using ELISA ( n = 16). j Schematic of chemotaxis assay to investigate the chemotatic axis to attract TNFR2 + T reg cells in MPE. k , l Flow cytometry histograms and comparisons of chemotaxis of TNFR2 + T reg cells in response to MPE in the presence of anti-CXCL16, anti-CCL17, anti-CCL22 or anti-CCL20 mAbs. Data shown in d , e , g – i , k and l are representative of at least three independent experiments (mean ± s.d.). Statistical analysis was performed using paired two-tailed Student’s t -test ( e and h ), Wilcoxon test ( i ) or one-way ANOVA ( l ). * P < 0.05, ** P < 0.01, **** P < 0.0001. ns not significant, mAbs monoclonal antibodies.
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    a KEGG pathway enrichment of DEGs between FACS-sorted TNFR2 + and TNFR2 − CD4 + T cells from MPE ( n = 3). b , c Volcano plot ( b ) and heatmap ( c ) of DEGs related to the chemokine signaling pathway. d , e Flow cytometry histograms ( d ) and comparisons of chemokine receptor expression (CXCR6, CCR4 and CCR6) ( e ) on TNFR2 + T reg cells and TNFR2 − T reg cells ( n = 13). f Schematic of Transwell chemotaxis assay testing TNFR2 − T reg chemotaxis toward MPE supernatant (by Figdraw). g , h Transwell chemotaxis assay comparing TNFR2 + T reg frequencies between freshly isolated cells and cells that migrated toward MPE supernatant after 4 h incubation. i Concentrations of CXCL16, <t>CCL17,</t> CCL22 and CCL20 in MPE and PB were quantified using ELISA ( n = 16). j Schematic of chemotaxis assay to investigate the chemotatic axis to attract TNFR2 + T reg cells in MPE. k , l Flow cytometry histograms and comparisons of chemotaxis of TNFR2 + T reg cells in response to MPE in the presence of anti-CXCL16, anti-CCL17, anti-CCL22 or anti-CCL20 mAbs. Data shown in d , e , g – i , k and l are representative of at least three independent experiments (mean ± s.d.). Statistical analysis was performed using paired two-tailed Student’s t -test ( e and h ), Wilcoxon test ( i ) or one-way ANOVA ( l ). * P < 0.05, ** P < 0.01, **** P < 0.0001. ns not significant, mAbs monoclonal antibodies.
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    a KEGG pathway enrichment of DEGs between FACS-sorted TNFR2 + and TNFR2 − CD4 + T cells from MPE ( n = 3). b , c Volcano plot ( b ) and heatmap ( c ) of DEGs related to the chemokine signaling pathway. d , e Flow cytometry histograms ( d ) and comparisons of chemokine receptor expression (CXCR6, CCR4 and CCR6) ( e ) on TNFR2 + T reg cells and TNFR2 − T reg cells ( n = 13). f Schematic of Transwell chemotaxis assay testing TNFR2 − T reg chemotaxis toward MPE supernatant (by Figdraw). g , h Transwell chemotaxis assay comparing TNFR2 + T reg frequencies between freshly isolated cells and cells that migrated toward MPE supernatant after 4 h incubation. i Concentrations of CXCL16, <t>CCL17,</t> CCL22 and CCL20 in MPE and PB were quantified using ELISA ( n = 16). j Schematic of chemotaxis assay to investigate the chemotatic axis to attract TNFR2 + T reg cells in MPE. k , l Flow cytometry histograms and comparisons of chemotaxis of TNFR2 + T reg cells in response to MPE in the presence of anti-CXCL16, anti-CCL17, anti-CCL22 or anti-CCL20 mAbs. Data shown in d , e , g – i , k and l are representative of at least three independent experiments (mean ± s.d.). Statistical analysis was performed using paired two-tailed Student’s t -test ( e and h ), Wilcoxon test ( i ) or one-way ANOVA ( l ). * P < 0.05, ** P < 0.01, **** P < 0.0001. ns not significant, mAbs monoclonal antibodies.
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    Image Search Results


    a KEGG pathway enrichment of DEGs between FACS-sorted TNFR2 + and TNFR2 − CD4 + T cells from MPE ( n = 3). b , c Volcano plot ( b ) and heatmap ( c ) of DEGs related to the chemokine signaling pathway. d , e Flow cytometry histograms ( d ) and comparisons of chemokine receptor expression (CXCR6, CCR4 and CCR6) ( e ) on TNFR2 + T reg cells and TNFR2 − T reg cells ( n = 13). f Schematic of Transwell chemotaxis assay testing TNFR2 − T reg chemotaxis toward MPE supernatant (by Figdraw). g , h Transwell chemotaxis assay comparing TNFR2 + T reg frequencies between freshly isolated cells and cells that migrated toward MPE supernatant after 4 h incubation. i Concentrations of CXCL16, CCL17, CCL22 and CCL20 in MPE and PB were quantified using ELISA ( n = 16). j Schematic of chemotaxis assay to investigate the chemotatic axis to attract TNFR2 + T reg cells in MPE. k , l Flow cytometry histograms and comparisons of chemotaxis of TNFR2 + T reg cells in response to MPE in the presence of anti-CXCL16, anti-CCL17, anti-CCL22 or anti-CCL20 mAbs. Data shown in d , e , g – i , k and l are representative of at least three independent experiments (mean ± s.d.). Statistical analysis was performed using paired two-tailed Student’s t -test ( e and h ), Wilcoxon test ( i ) or one-way ANOVA ( l ). * P < 0.05, ** P < 0.01, **** P < 0.0001. ns not significant, mAbs monoclonal antibodies.

    Journal: Experimental & Molecular Medicine

    Article Title: H3K18 lactylation in cancer-associated fibroblasts drives malignant pleural effusion progression via TNFR2 + T reg recruitment

    doi: 10.1038/s12276-025-01557-3

    Figure Lengend Snippet: a KEGG pathway enrichment of DEGs between FACS-sorted TNFR2 + and TNFR2 − CD4 + T cells from MPE ( n = 3). b , c Volcano plot ( b ) and heatmap ( c ) of DEGs related to the chemokine signaling pathway. d , e Flow cytometry histograms ( d ) and comparisons of chemokine receptor expression (CXCR6, CCR4 and CCR6) ( e ) on TNFR2 + T reg cells and TNFR2 − T reg cells ( n = 13). f Schematic of Transwell chemotaxis assay testing TNFR2 − T reg chemotaxis toward MPE supernatant (by Figdraw). g , h Transwell chemotaxis assay comparing TNFR2 + T reg frequencies between freshly isolated cells and cells that migrated toward MPE supernatant after 4 h incubation. i Concentrations of CXCL16, CCL17, CCL22 and CCL20 in MPE and PB were quantified using ELISA ( n = 16). j Schematic of chemotaxis assay to investigate the chemotatic axis to attract TNFR2 + T reg cells in MPE. k , l Flow cytometry histograms and comparisons of chemotaxis of TNFR2 + T reg cells in response to MPE in the presence of anti-CXCL16, anti-CCL17, anti-CCL22 or anti-CCL20 mAbs. Data shown in d , e , g – i , k and l are representative of at least three independent experiments (mean ± s.d.). Statistical analysis was performed using paired two-tailed Student’s t -test ( e and h ), Wilcoxon test ( i ) or one-way ANOVA ( l ). * P < 0.05, ** P < 0.01, **** P < 0.0001. ns not significant, mAbs monoclonal antibodies.

    Article Snippet: In specific experimental conditions, the following reagents were added to the lower chamber: anti-CCL17 antibody (50 ng/ml, #MAB364-SP, R&D Systems), anti-CCL20 antibody (50 ng/ml, #MAB360-SP, R&D Systems), anti-CCL22 antibody (50 ng/ml, #MAB336-SP, R&D Systems), anti-CXCL16 antibody (50 ng/ml, #MAB976, R&D Systems) or recombinant human CXCL16 (100 ng/ml, #976-CX-025/CF, R&D Systems).

    Techniques: Flow Cytometry, Expressing, Chemotaxis Assay, Isolation, Incubation, Enzyme-linked Immunosorbent Assay, Two Tailed Test, Bioprocessing