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antibodies targeting cd155  (Cell Signaling Technology Inc)


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    Structured Review

    Cell Signaling Technology Inc antibodies targeting cd155
    Co-expression of DNAM-1, TACTILE, and TIGIT is correlated with NK cell infiltration in PDAC tumors. A Pie charts illustrating the proportion of T cell subsets expressing DNAM-1, TACTILE, and/or TIGIT. For each subset, pie charts represent cells from peripheral blood (upper row) and tissue (lower row). Pie segments and arcs are color-coded to indicate the expression categories: DNAM-1 + (dark blue arcs), TACTILE + (dark green arcs), TIGIT + (light green arcs), and combinations thereof as defined in the legend below. B Heatmap depicting the absolute difference per T cell subset expressing DNAM-1, TACTILE, and/or TIGIT. The color bar represents the absolute difference in percentage, with decrease (blue) and increase (red) in the tumor. Statistical significance was determined using a linear mixed-effects model. Benjamini-Hochberg correction was applied to adjust p -values. Adjusted p -values < 0.05 were considered significant and depicted in bold with an *. C Pie charts illustrate the proportion of NK cell subsets expressing DNAM-1, TACTILE, and/or TIGIT. The same color legend was used as in A. D Heatmap depicting the absolute difference per NK cell subset expressing DNAM-1, TACTILE, and/or TIGIT. The color bar represents the absolute difference in percentage, with decrease (blue) and increase (red) in the tumor. Statistical significance was determined using a linear mixed-effects model. Benjamini–Hochberg correction was applied to adjust p -values. Adjusted p -values < 0.05 were considered significant and depicted in bold with an *. E Correlation analysis depicting association between the expression of DNAM-1 and NK cell infiltration in PDAC tissue samples. The left panel shows the correlation between the proportion of DNAM-1 + NK cells expressed by the frequency of CD45 + cells (FOCD45). The right panel shows the correlation between geometric mean of DNAM-1 on NK cells. Data points represent individual samples, with the red line indicating the best-fit linear regression and the shaded area representing the confidence interval. Spearman correlation coefficients ( R ) and p -values are depicted. F Correlation analysis depicting association between the gene expression of DNAM-1 and <t>CD155</t> (left panel) or CD112 (right panel) obtained from TCGA data from PDAC patients. Data points represent individual samples, with the red line indicating the best-fit linear regression and the shaded area representing the confidence interval. Spearman correlation coefficients ( R ) and p -values are depicted
    Antibodies Targeting Cd155, supplied by Cell Signaling Technology Inc, used in various techniques. Bioz Stars score: 95/100, based on 55 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
    https://www.bioz.com/product/cd155/PVR%2FCD155+Rabbit+mAb/pmc12976321-95-6-9
    Average 95 stars, based on 55 article reviews
    antibodies targeting cd155 - by Bioz Stars, 2026-09
    95/100 stars

    Images

    1) Product Images from "Protein-level profiling of TIGIT axis components in human PDAC reveals immune–suppressive expression patterns"

    Article Title: Protein-level profiling of TIGIT axis components in human PDAC reveals immune–suppressive expression patterns

    Journal: Cancer Immunology, Immunotherapy : CII

    doi: 10.1007/s00262-026-04343-w

    Co-expression of DNAM-1, TACTILE, and TIGIT is correlated with NK cell infiltration in PDAC tumors. A Pie charts illustrating the proportion of T cell subsets expressing DNAM-1, TACTILE, and/or TIGIT. For each subset, pie charts represent cells from peripheral blood (upper row) and tissue (lower row). Pie segments and arcs are color-coded to indicate the expression categories: DNAM-1 + (dark blue arcs), TACTILE + (dark green arcs), TIGIT + (light green arcs), and combinations thereof as defined in the legend below. B Heatmap depicting the absolute difference per T cell subset expressing DNAM-1, TACTILE, and/or TIGIT. The color bar represents the absolute difference in percentage, with decrease (blue) and increase (red) in the tumor. Statistical significance was determined using a linear mixed-effects model. Benjamini-Hochberg correction was applied to adjust p -values. Adjusted p -values < 0.05 were considered significant and depicted in bold with an *. C Pie charts illustrate the proportion of NK cell subsets expressing DNAM-1, TACTILE, and/or TIGIT. The same color legend was used as in A. D Heatmap depicting the absolute difference per NK cell subset expressing DNAM-1, TACTILE, and/or TIGIT. The color bar represents the absolute difference in percentage, with decrease (blue) and increase (red) in the tumor. Statistical significance was determined using a linear mixed-effects model. Benjamini–Hochberg correction was applied to adjust p -values. Adjusted p -values < 0.05 were considered significant and depicted in bold with an *. E Correlation analysis depicting association between the expression of DNAM-1 and NK cell infiltration in PDAC tissue samples. The left panel shows the correlation between the proportion of DNAM-1 + NK cells expressed by the frequency of CD45 + cells (FOCD45). The right panel shows the correlation between geometric mean of DNAM-1 on NK cells. Data points represent individual samples, with the red line indicating the best-fit linear regression and the shaded area representing the confidence interval. Spearman correlation coefficients ( R ) and p -values are depicted. F Correlation analysis depicting association between the gene expression of DNAM-1 and CD155 (left panel) or CD112 (right panel) obtained from TCGA data from PDAC patients. Data points represent individual samples, with the red line indicating the best-fit linear regression and the shaded area representing the confidence interval. Spearman correlation coefficients ( R ) and p -values are depicted
    Figure Legend Snippet: Co-expression of DNAM-1, TACTILE, and TIGIT is correlated with NK cell infiltration in PDAC tumors. A Pie charts illustrating the proportion of T cell subsets expressing DNAM-1, TACTILE, and/or TIGIT. For each subset, pie charts represent cells from peripheral blood (upper row) and tissue (lower row). Pie segments and arcs are color-coded to indicate the expression categories: DNAM-1 + (dark blue arcs), TACTILE + (dark green arcs), TIGIT + (light green arcs), and combinations thereof as defined in the legend below. B Heatmap depicting the absolute difference per T cell subset expressing DNAM-1, TACTILE, and/or TIGIT. The color bar represents the absolute difference in percentage, with decrease (blue) and increase (red) in the tumor. Statistical significance was determined using a linear mixed-effects model. Benjamini-Hochberg correction was applied to adjust p -values. Adjusted p -values < 0.05 were considered significant and depicted in bold with an *. C Pie charts illustrate the proportion of NK cell subsets expressing DNAM-1, TACTILE, and/or TIGIT. The same color legend was used as in A. D Heatmap depicting the absolute difference per NK cell subset expressing DNAM-1, TACTILE, and/or TIGIT. The color bar represents the absolute difference in percentage, with decrease (blue) and increase (red) in the tumor. Statistical significance was determined using a linear mixed-effects model. Benjamini–Hochberg correction was applied to adjust p -values. Adjusted p -values < 0.05 were considered significant and depicted in bold with an *. E Correlation analysis depicting association between the expression of DNAM-1 and NK cell infiltration in PDAC tissue samples. The left panel shows the correlation between the proportion of DNAM-1 + NK cells expressed by the frequency of CD45 + cells (FOCD45). The right panel shows the correlation between geometric mean of DNAM-1 on NK cells. Data points represent individual samples, with the red line indicating the best-fit linear regression and the shaded area representing the confidence interval. Spearman correlation coefficients ( R ) and p -values are depicted. F Correlation analysis depicting association between the gene expression of DNAM-1 and CD155 (left panel) or CD112 (right panel) obtained from TCGA data from PDAC patients. Data points represent individual samples, with the red line indicating the best-fit linear regression and the shaded area representing the confidence interval. Spearman correlation coefficients ( R ) and p -values are depicted

    Techniques Used: Expressing, Gene Expression

    High CD155 and CD112 co-expression among nectin family ligands suggests immune evasion via the TIGIT axis in PDAC A Representative histological images of tumor tissue stained with hematoxylin and eosin (HE) and immunohistochemistry staining for CD155, CD112, and CD111. B Dot plots quantifying the percentage of positive tumor cell scores (%) for CD155, CD112, and CD111. Each dot represents the percentage of positive tumor cells in individual samples, with horizontal lines indicating the mean value Shapiro–Wilk test was used to assess normality, and Friedman test was used to determine statistical significance between groups, p < 0.05 was considered significant. C Bar plot showing the mean positive tumor cell scores (%) for CD155, CD112, and CD111 across different tumor stages. Each dot represents an individual sample. D Correlation plot illustrating the correlation between CD112 and CD155 ligand expression determined by immune histochemistry. Each data point represents an individual sample, with the red line indicating the best-fit linear regression and the shaded area representing the confidence interval. Spearman correlation coefficients ( R ) and p -values are depicted. E Heatmap bubble plot displaying the correlation between ligand expression levels. The color intensity represents the Spearman correlation coefficient, while bubble size indicates the statistical significance, as shown in the color legend
    Figure Legend Snippet: High CD155 and CD112 co-expression among nectin family ligands suggests immune evasion via the TIGIT axis in PDAC A Representative histological images of tumor tissue stained with hematoxylin and eosin (HE) and immunohistochemistry staining for CD155, CD112, and CD111. B Dot plots quantifying the percentage of positive tumor cell scores (%) for CD155, CD112, and CD111. Each dot represents the percentage of positive tumor cells in individual samples, with horizontal lines indicating the mean value Shapiro–Wilk test was used to assess normality, and Friedman test was used to determine statistical significance between groups, p < 0.05 was considered significant. C Bar plot showing the mean positive tumor cell scores (%) for CD155, CD112, and CD111 across different tumor stages. Each dot represents an individual sample. D Correlation plot illustrating the correlation between CD112 and CD155 ligand expression determined by immune histochemistry. Each data point represents an individual sample, with the red line indicating the best-fit linear regression and the shaded area representing the confidence interval. Spearman correlation coefficients ( R ) and p -values are depicted. E Heatmap bubble plot displaying the correlation between ligand expression levels. The color intensity represents the Spearman correlation coefficient, while bubble size indicates the statistical significance, as shown in the color legend

    Techniques Used: Expressing, Staining, Immunohistochemistry

    Related Articles

    Staining:

    Article Title: Dual targeting of CD155 / TIGIT and PD-L1 / PD-1 immune checkpoints potentiates NK cell-mediated cytotoxicity in medulloblastoma
    Article Snippet: The signal was captured with a Chemi-Doc Imaging system from Bio-Rad. .. Tissue slides were deparaffinized, blocked, cooked in EDTA, and stained by primary antibodies against PD-L1 (Roche, Ready-to-use (RTU) clone SP263, J17387), CD3 (Roche, RTU, 2GV6, K10044), and CD155 (Cell Signaling clone D3G7H, 13544S, 1:500) was performed using an automated immunostainer (Benchmark Ultra, Ventana, Roche) using the OptiView DAB detection kit (REF: 760-700) and UltraVIEW Universal Alkaline Phosphatase Red Detection Kit (REF: 760-501). .. Immunohistochemistry for TIGIT (Abcam clone BLR047F, ab243903, 1:100) was performed manually (EDTA pH 9.0 was used as antigen retrieval step at 100 °C for 20 minutes, followed by 60 minutes of incubation with the primary antibody).

    Western Blot:

    Article Title: Troxerutin suppresses the stemness of osteosarcoma via the CD155/SRC/β-catenin signaling axis
    Article Snippet: Detection was performed using enhanced chemiluminescence (ECL; MeilunBio, China). .. The primary antibody used for western blotting and immunohistochemistry assays were as follows: CD155 (CST, 81254), GAPDH (Proteintech, 60004–1-Ig), β-tubulin (Proteintech, 10094–1-AP), β-catenin (Proteintech, 51067–2-AP), histone H3 (CST, 9715), AKT (Proteintech, 60203–2-Ig), p-AKT (Proteintech, 66444–1-Ig), GSK3β (Proteintech, 22104–1-AP), p-GSK3β (Proteintech, 67558–1-Ig), SRC (CST, 2108), p-SRC Tyr 416 (CST, 6943), p-SRC Tyr 527 (CST, 2105), and Ki-67 (CST, 9449). ..

    Article Title: Troxerutin suppresses the stemness of osteosarcoma via the CD155/SRC/β-catenin signaling axis.
    Article Snippet: Detection was performed using enhanced chemiluminescence (ECL; MeilunBio, China). .. The primary antibody used for western blotting and immunohistochemistry assays were as follows: CD155 (CST, 81254), GAPDH (Proteintech, 60004–1-Ig), β-tubulin (Proteintech, 10094–1-AP), β-catenin (Proteintech, 51067–2-AP), histone H3 (CST, 9715), AKT (Proteintech, 60203–2-Ig), p-AKT (Proteintech, 66444–1-Ig), GSK3β (Proteintech, 22104–1-AP), p-GSK3β (Proteintech, 67558–1-Ig), SRC (CST, 2108), p-SRC Tyr 416 (CST, 6943), p-SRC Tyr 527 (CST, 2105), and Ki-67 (CST, 9449). ..

    Article Title: Post-radiation targeting of TIGIT and CD96 improved immunotherapy efficacy in head and neck squamous cell carcinoma.
    Article Snippet: .. List of antibodies used in this study Application Antibody Catalog / Clone No. (Company) IHC CD3 #85061 (Cell Signaling AR TIC LE IN PR ES S 90 Technology) CD57 clone TB01 (Dako) CD155 #81254 (Cell Signaling Technology) CD111 HPA026846 (Atlas Antibodies) CD112 #95333 (Cell Signaling Technology) CD113 HPA011038 (Atlas Antibodies) TIGIT NB2-79794 (Novus Biologicals) CD226 HPA015715 (Atlas Antibodies) CD96 HPA066754 (Atlas Antibodies) CD3 #85061 (Cell Signaling Technology) CD57 clone TB01 (Dako) (Human) CD155 #81254 (Cell Signaling Technology) CD155 ab233102 (Abcam) CD112 27171-1-AP (Proteintech) CD111 24713-1-AP (Proteintech) CD113 LS-C210246 (LSBio) PCNA sc-56 (Santa Cruz Biotechnology) cleaved caspase-3 #9664 (Cell Signaling Technology) P-H2AX #9718 (Cell Signaling Technology) IHC (Mouse) Ki67 ab16667 (Abcam) CD155 #81254 (Cell Signaling Technology) CD111 sc-21722 (Santa Cruz Biotechnology) CD112 #95333 (Cell Signaling Technology) CD113 sc-69714 (Santa Cruz Biotechnology) Western Blot (Human) β-actin #4970 (Cell Signaling Technology) Western Blot CD155 ab16667 (Abcam) AR TIC LE IN PR ES S 91 CD112 ab135246 (Abcam) CD111 sc-21722 (Santa Cruz Biotechnology) CD113 sc-271611 (Santa Cruz Biotechnology) (Mouse) β-actin #4970 (Cell Signaling Technology) CD45.2-Pacific Blue clone 104 (BioLegend) CD3-APC-Cy7 clone 145-2C11 (BioLegend) TIGIT-PE clone 1G9 (BioLegend) CD96-APC clone 3.3 (BioLegend) CD226-FITC clone 10E5 (BioLegend) CD25-FITC clone PC61 (BioLegend) FOXP3-PE clone MF-14 (BioLegend) CD226-PE-Cy7 clone 10E5 (BioLegend) CD4-APC clone RM4-4 (BioLegend) CD3-APC-Cy7 clone 17A2 (BioLegend) CD45-Pacific Blue clone S18009F (BioLegend) IFN-γ-FITC clone XMG1.2 (BioLegend) IL-4-PE-Cy7 clone 11B11 (BioLegend) CD8a-PE clone 53-6.7 (BioLegend) CD107a-FITC clone 1D4B (BioLegend) Perforin-APC clone S16009A (BioLegend) CD8a-PE-Cy7 clone 53-6.7 (BioLegend) CD4-PerCP-Cy5.5 clone GK1.5 (BioLegend) Granzyme B-PE clone NGZB (eBioscience) CD155-PE clone 4.24.1 (BioLegend) Flow Cytometry (Mouse) CD112-PE clone 829038 (R&D Systems) Anti-mouse TIGIT #BE037 / clone 1G9 (Bio X Cell) Anti-mouse CD96 #BE0174 / clone 3.3 (Bio X Cell) In Vivo Treatment (Mouse) Mouse IgG1 Isotype Control #BE0083 / clone MOPC-21 (Bio X Cell) 1810 1811 1812 1813 AR TIC LE IN PR ES S 92 1814 1815 1816 1817 1818 1819 1820 1821 1822 1823 Table S2. ..

    Article Title: Post-radiation targeting of TIGIT and CD96 improved immunotherapy efficacy in head and neck squamous cell carcinoma.
    Article Snippet: .. List of antibodies used in this study Application Antibody Catalog / Clone No. (Company) CD3 #85061 (Cell Signaling Technology) CD57 clone TB01 (Dako) CD155 #81254 (Cell Signaling Technology) CD111 HPA026846 (Atlas Antibodies) CD112 #95333 (Cell Signaling Technology) CD113 HPA011038 (Atlas Antibodies) TIGIT NB2-79794 (Novus Biologicals) CD226 HPA015715 (Atlas Antibodies) CD96 HPA066754 (Atlas Antibodies) CD3 #85061 (Cell Signaling Technology) CD57 clone TB01 (Dako) IHC (Human) CD155 #81254 (Cell Signaling Technology) CD155 ab233102 (Abcam) CD112 27171-1-AP (Proteintech) CD111 24713-1-AP (Proteintech) CD113 LS-C210246 (LSBio) PCNA sc-56 (Santa Cruz Biotechnology) Cleaved Caspase-3 #9664 (Cell Signaling Technology) P-H2AX #9718 (Cell Signaling Technology) IHC (Mouse) Ki67 ab16667 (Abcam) CD155 #81254 (Cell Signaling Technology) CD111 sc-21722 (Santa Cruz Biotechnology) CD112 #95333 (Cell Signaling Technology) Western Blot (Human) CD113 sc-69714 (Santa Cruz AR TIC LE IN PR ES S 2 Biotechnology) β-actin #4970 (Cell Signaling Technology) CD155 ab16667 (Abcam) CD112 ab135246 (Abcam) CD111 sc-21722 (Santa Cruz Biotechnology) CD113 sc-271611 (Santa Cruz Biotechnology) Western Blot (Mouse) β-actin #4970 (Cell Signaling Technology) CD45.2-Pacific Blue clone 104 (BioLegend) CD3-APC-Cy7 clone 145-2C11 (BioLegend) TIGIT-PE clone 1G9 (BioLegend) CD96-APC clone 3.3 (BioLegend) CD226-FITC clone 10E5 (BioLegend) CD25-FITC clone PC61 (BioLegend) FOXP3-PE clone MF-14 (BioLegend) CD226-PE-Cy7 clone 10E5 (BioLegend) CD4-APC clone RM4-4 (BioLegend) CD3-APC-Cy7 clone 17A2 (BioLegend) CD45-Pacific Blue clone S18009F (BioLegend) IFN-γ-FITC clone XMG1.2 (BioLegend) IL-4-PE-Cy7 clone 11B11 (BioLegend) CD8a-PE clone 53-6.7 (BioLegend) CD107a-FITC clone 1D4B (BioLegend) Perforin-APC clone S16009A (BioLegend) CD8a-PE-Cy7 clone 53-6.7 (BioLegend) CD4-PerCP-Cy5.5 clone GK1.5 (BioLegend) Granzyme B-PE clone NGZB (eBioscience) CD155-PE clone 4.24.1 (BioLegend) Flow Cytometry (Mouse) CD112-PE clone 829038 (R&D Systems) Anti-mouse TIGIT #BE037 / clone 1G9 (Bio X Cell) Anti-mouse CD96 #BE0174 / clone 3.3 (Bio X Cell) In Vivo Treatment (Mouse) Mouse IgG1 Isotype Control #BE0083 / clone MOPC-21 (Bio X Cell) 2 AR TIC LE IN PR ES S Table S2. ..

    Immunohistochemistry:

    Article Title: Troxerutin suppresses the stemness of osteosarcoma via the CD155/SRC/β-catenin signaling axis
    Article Snippet: Detection was performed using enhanced chemiluminescence (ECL; MeilunBio, China). .. The primary antibody used for western blotting and immunohistochemistry assays were as follows: CD155 (CST, 81254), GAPDH (Proteintech, 60004–1-Ig), β-tubulin (Proteintech, 10094–1-AP), β-catenin (Proteintech, 51067–2-AP), histone H3 (CST, 9715), AKT (Proteintech, 60203–2-Ig), p-AKT (Proteintech, 66444–1-Ig), GSK3β (Proteintech, 22104–1-AP), p-GSK3β (Proteintech, 67558–1-Ig), SRC (CST, 2108), p-SRC Tyr 416 (CST, 6943), p-SRC Tyr 527 (CST, 2105), and Ki-67 (CST, 9449). ..

    Article Title: Troxerutin suppresses the stemness of osteosarcoma via the CD155/SRC/β-catenin signaling axis.
    Article Snippet: Detection was performed using enhanced chemiluminescence (ECL; MeilunBio, China). .. The primary antibody used for western blotting and immunohistochemistry assays were as follows: CD155 (CST, 81254), GAPDH (Proteintech, 60004–1-Ig), β-tubulin (Proteintech, 10094–1-AP), β-catenin (Proteintech, 51067–2-AP), histone H3 (CST, 9715), AKT (Proteintech, 60203–2-Ig), p-AKT (Proteintech, 66444–1-Ig), GSK3β (Proteintech, 22104–1-AP), p-GSK3β (Proteintech, 67558–1-Ig), SRC (CST, 2108), p-SRC Tyr 416 (CST, 6943), p-SRC Tyr 527 (CST, 2105), and Ki-67 (CST, 9449). ..

    Article Title: Post-radiation targeting of TIGIT and CD96 improved immunotherapy efficacy in head and neck squamous cell carcinoma.
    Article Snippet: .. List of antibodies used in this study Application Antibody Catalog / Clone No. (Company) IHC CD3 #85061 (Cell Signaling AR TIC LE IN PR ES S 90 Technology) CD57 clone TB01 (Dako) CD155 #81254 (Cell Signaling Technology) CD111 HPA026846 (Atlas Antibodies) CD112 #95333 (Cell Signaling Technology) CD113 HPA011038 (Atlas Antibodies) TIGIT NB2-79794 (Novus Biologicals) CD226 HPA015715 (Atlas Antibodies) CD96 HPA066754 (Atlas Antibodies) CD3 #85061 (Cell Signaling Technology) CD57 clone TB01 (Dako) (Human) CD155 #81254 (Cell Signaling Technology) CD155 ab233102 (Abcam) CD112 27171-1-AP (Proteintech) CD111 24713-1-AP (Proteintech) CD113 LS-C210246 (LSBio) PCNA sc-56 (Santa Cruz Biotechnology) cleaved caspase-3 #9664 (Cell Signaling Technology) P-H2AX #9718 (Cell Signaling Technology) IHC (Mouse) Ki67 ab16667 (Abcam) CD155 #81254 (Cell Signaling Technology) CD111 sc-21722 (Santa Cruz Biotechnology) CD112 #95333 (Cell Signaling Technology) CD113 sc-69714 (Santa Cruz Biotechnology) Western Blot (Human) β-actin #4970 (Cell Signaling Technology) Western Blot CD155 ab16667 (Abcam) AR TIC LE IN PR ES S 91 CD112 ab135246 (Abcam) CD111 sc-21722 (Santa Cruz Biotechnology) CD113 sc-271611 (Santa Cruz Biotechnology) (Mouse) β-actin #4970 (Cell Signaling Technology) CD45.2-Pacific Blue clone 104 (BioLegend) CD3-APC-Cy7 clone 145-2C11 (BioLegend) TIGIT-PE clone 1G9 (BioLegend) CD96-APC clone 3.3 (BioLegend) CD226-FITC clone 10E5 (BioLegend) CD25-FITC clone PC61 (BioLegend) FOXP3-PE clone MF-14 (BioLegend) CD226-PE-Cy7 clone 10E5 (BioLegend) CD4-APC clone RM4-4 (BioLegend) CD3-APC-Cy7 clone 17A2 (BioLegend) CD45-Pacific Blue clone S18009F (BioLegend) IFN-γ-FITC clone XMG1.2 (BioLegend) IL-4-PE-Cy7 clone 11B11 (BioLegend) CD8a-PE clone 53-6.7 (BioLegend) CD107a-FITC clone 1D4B (BioLegend) Perforin-APC clone S16009A (BioLegend) CD8a-PE-Cy7 clone 53-6.7 (BioLegend) CD4-PerCP-Cy5.5 clone GK1.5 (BioLegend) Granzyme B-PE clone NGZB (eBioscience) CD155-PE clone 4.24.1 (BioLegend) Flow Cytometry (Mouse) CD112-PE clone 829038 (R&D Systems) Anti-mouse TIGIT #BE037 / clone 1G9 (Bio X Cell) Anti-mouse CD96 #BE0174 / clone 3.3 (Bio X Cell) In Vivo Treatment (Mouse) Mouse IgG1 Isotype Control #BE0083 / clone MOPC-21 (Bio X Cell) 1810 1811 1812 1813 AR TIC LE IN PR ES S 92 1814 1815 1816 1817 1818 1819 1820 1821 1822 1823 Table S2. ..

    Article Title: Post-radiation targeting of TIGIT and CD96 improved immunotherapy efficacy in head and neck squamous cell carcinoma.
    Article Snippet: .. List of antibodies used in this study Application Antibody Catalog / Clone No. (Company) CD3 #85061 (Cell Signaling Technology) CD57 clone TB01 (Dako) CD155 #81254 (Cell Signaling Technology) CD111 HPA026846 (Atlas Antibodies) CD112 #95333 (Cell Signaling Technology) CD113 HPA011038 (Atlas Antibodies) TIGIT NB2-79794 (Novus Biologicals) CD226 HPA015715 (Atlas Antibodies) CD96 HPA066754 (Atlas Antibodies) CD3 #85061 (Cell Signaling Technology) CD57 clone TB01 (Dako) IHC (Human) CD155 #81254 (Cell Signaling Technology) CD155 ab233102 (Abcam) CD112 27171-1-AP (Proteintech) CD111 24713-1-AP (Proteintech) CD113 LS-C210246 (LSBio) PCNA sc-56 (Santa Cruz Biotechnology) Cleaved Caspase-3 #9664 (Cell Signaling Technology) P-H2AX #9718 (Cell Signaling Technology) IHC (Mouse) Ki67 ab16667 (Abcam) CD155 #81254 (Cell Signaling Technology) CD111 sc-21722 (Santa Cruz Biotechnology) CD112 #95333 (Cell Signaling Technology) Western Blot (Human) CD113 sc-69714 (Santa Cruz AR TIC LE IN PR ES S 2 Biotechnology) β-actin #4970 (Cell Signaling Technology) CD155 ab16667 (Abcam) CD112 ab135246 (Abcam) CD111 sc-21722 (Santa Cruz Biotechnology) CD113 sc-271611 (Santa Cruz Biotechnology) Western Blot (Mouse) β-actin #4970 (Cell Signaling Technology) CD45.2-Pacific Blue clone 104 (BioLegend) CD3-APC-Cy7 clone 145-2C11 (BioLegend) TIGIT-PE clone 1G9 (BioLegend) CD96-APC clone 3.3 (BioLegend) CD226-FITC clone 10E5 (BioLegend) CD25-FITC clone PC61 (BioLegend) FOXP3-PE clone MF-14 (BioLegend) CD226-PE-Cy7 clone 10E5 (BioLegend) CD4-APC clone RM4-4 (BioLegend) CD3-APC-Cy7 clone 17A2 (BioLegend) CD45-Pacific Blue clone S18009F (BioLegend) IFN-γ-FITC clone XMG1.2 (BioLegend) IL-4-PE-Cy7 clone 11B11 (BioLegend) CD8a-PE clone 53-6.7 (BioLegend) CD107a-FITC clone 1D4B (BioLegend) Perforin-APC clone S16009A (BioLegend) CD8a-PE-Cy7 clone 53-6.7 (BioLegend) CD4-PerCP-Cy5.5 clone GK1.5 (BioLegend) Granzyme B-PE clone NGZB (eBioscience) CD155-PE clone 4.24.1 (BioLegend) Flow Cytometry (Mouse) CD112-PE clone 829038 (R&D Systems) Anti-mouse TIGIT #BE037 / clone 1G9 (Bio X Cell) Anti-mouse CD96 #BE0174 / clone 3.3 (Bio X Cell) In Vivo Treatment (Mouse) Mouse IgG1 Isotype Control #BE0083 / clone MOPC-21 (Bio X Cell) 2 AR TIC LE IN PR ES S Table S2. ..

    Flow Cytometry:

    Article Title: Post-radiation targeting of TIGIT and CD96 improved immunotherapy efficacy in head and neck squamous cell carcinoma.
    Article Snippet: .. List of antibodies used in this study Application Antibody Catalog / Clone No. (Company) IHC CD3 #85061 (Cell Signaling AR TIC LE IN PR ES S 90 Technology) CD57 clone TB01 (Dako) CD155 #81254 (Cell Signaling Technology) CD111 HPA026846 (Atlas Antibodies) CD112 #95333 (Cell Signaling Technology) CD113 HPA011038 (Atlas Antibodies) TIGIT NB2-79794 (Novus Biologicals) CD226 HPA015715 (Atlas Antibodies) CD96 HPA066754 (Atlas Antibodies) CD3 #85061 (Cell Signaling Technology) CD57 clone TB01 (Dako) (Human) CD155 #81254 (Cell Signaling Technology) CD155 ab233102 (Abcam) CD112 27171-1-AP (Proteintech) CD111 24713-1-AP (Proteintech) CD113 LS-C210246 (LSBio) PCNA sc-56 (Santa Cruz Biotechnology) cleaved caspase-3 #9664 (Cell Signaling Technology) P-H2AX #9718 (Cell Signaling Technology) IHC (Mouse) Ki67 ab16667 (Abcam) CD155 #81254 (Cell Signaling Technology) CD111 sc-21722 (Santa Cruz Biotechnology) CD112 #95333 (Cell Signaling Technology) CD113 sc-69714 (Santa Cruz Biotechnology) Western Blot (Human) β-actin #4970 (Cell Signaling Technology) Western Blot CD155 ab16667 (Abcam) AR TIC LE IN PR ES S 91 CD112 ab135246 (Abcam) CD111 sc-21722 (Santa Cruz Biotechnology) CD113 sc-271611 (Santa Cruz Biotechnology) (Mouse) β-actin #4970 (Cell Signaling Technology) CD45.2-Pacific Blue clone 104 (BioLegend) CD3-APC-Cy7 clone 145-2C11 (BioLegend) TIGIT-PE clone 1G9 (BioLegend) CD96-APC clone 3.3 (BioLegend) CD226-FITC clone 10E5 (BioLegend) CD25-FITC clone PC61 (BioLegend) FOXP3-PE clone MF-14 (BioLegend) CD226-PE-Cy7 clone 10E5 (BioLegend) CD4-APC clone RM4-4 (BioLegend) CD3-APC-Cy7 clone 17A2 (BioLegend) CD45-Pacific Blue clone S18009F (BioLegend) IFN-γ-FITC clone XMG1.2 (BioLegend) IL-4-PE-Cy7 clone 11B11 (BioLegend) CD8a-PE clone 53-6.7 (BioLegend) CD107a-FITC clone 1D4B (BioLegend) Perforin-APC clone S16009A (BioLegend) CD8a-PE-Cy7 clone 53-6.7 (BioLegend) CD4-PerCP-Cy5.5 clone GK1.5 (BioLegend) Granzyme B-PE clone NGZB (eBioscience) CD155-PE clone 4.24.1 (BioLegend) Flow Cytometry (Mouse) CD112-PE clone 829038 (R&D Systems) Anti-mouse TIGIT #BE037 / clone 1G9 (Bio X Cell) Anti-mouse CD96 #BE0174 / clone 3.3 (Bio X Cell) In Vivo Treatment (Mouse) Mouse IgG1 Isotype Control #BE0083 / clone MOPC-21 (Bio X Cell) 1810 1811 1812 1813 AR TIC LE IN PR ES S 92 1814 1815 1816 1817 1818 1819 1820 1821 1822 1823 Table S2. ..

    Article Title: Post-radiation targeting of TIGIT and CD96 improved immunotherapy efficacy in head and neck squamous cell carcinoma.
    Article Snippet: .. List of antibodies used in this study Application Antibody Catalog / Clone No. (Company) CD3 #85061 (Cell Signaling Technology) CD57 clone TB01 (Dako) CD155 #81254 (Cell Signaling Technology) CD111 HPA026846 (Atlas Antibodies) CD112 #95333 (Cell Signaling Technology) CD113 HPA011038 (Atlas Antibodies) TIGIT NB2-79794 (Novus Biologicals) CD226 HPA015715 (Atlas Antibodies) CD96 HPA066754 (Atlas Antibodies) CD3 #85061 (Cell Signaling Technology) CD57 clone TB01 (Dako) IHC (Human) CD155 #81254 (Cell Signaling Technology) CD155 ab233102 (Abcam) CD112 27171-1-AP (Proteintech) CD111 24713-1-AP (Proteintech) CD113 LS-C210246 (LSBio) PCNA sc-56 (Santa Cruz Biotechnology) Cleaved Caspase-3 #9664 (Cell Signaling Technology) P-H2AX #9718 (Cell Signaling Technology) IHC (Mouse) Ki67 ab16667 (Abcam) CD155 #81254 (Cell Signaling Technology) CD111 sc-21722 (Santa Cruz Biotechnology) CD112 #95333 (Cell Signaling Technology) Western Blot (Human) CD113 sc-69714 (Santa Cruz AR TIC LE IN PR ES S 2 Biotechnology) β-actin #4970 (Cell Signaling Technology) CD155 ab16667 (Abcam) CD112 ab135246 (Abcam) CD111 sc-21722 (Santa Cruz Biotechnology) CD113 sc-271611 (Santa Cruz Biotechnology) Western Blot (Mouse) β-actin #4970 (Cell Signaling Technology) CD45.2-Pacific Blue clone 104 (BioLegend) CD3-APC-Cy7 clone 145-2C11 (BioLegend) TIGIT-PE clone 1G9 (BioLegend) CD96-APC clone 3.3 (BioLegend) CD226-FITC clone 10E5 (BioLegend) CD25-FITC clone PC61 (BioLegend) FOXP3-PE clone MF-14 (BioLegend) CD226-PE-Cy7 clone 10E5 (BioLegend) CD4-APC clone RM4-4 (BioLegend) CD3-APC-Cy7 clone 17A2 (BioLegend) CD45-Pacific Blue clone S18009F (BioLegend) IFN-γ-FITC clone XMG1.2 (BioLegend) IL-4-PE-Cy7 clone 11B11 (BioLegend) CD8a-PE clone 53-6.7 (BioLegend) CD107a-FITC clone 1D4B (BioLegend) Perforin-APC clone S16009A (BioLegend) CD8a-PE-Cy7 clone 53-6.7 (BioLegend) CD4-PerCP-Cy5.5 clone GK1.5 (BioLegend) Granzyme B-PE clone NGZB (eBioscience) CD155-PE clone 4.24.1 (BioLegend) Flow Cytometry (Mouse) CD112-PE clone 829038 (R&D Systems) Anti-mouse TIGIT #BE037 / clone 1G9 (Bio X Cell) Anti-mouse CD96 #BE0174 / clone 3.3 (Bio X Cell) In Vivo Treatment (Mouse) Mouse IgG1 Isotype Control #BE0083 / clone MOPC-21 (Bio X Cell) 2 AR TIC LE IN PR ES S Table S2. ..

    In Vivo:

    Article Title: Post-radiation targeting of TIGIT and CD96 improved immunotherapy efficacy in head and neck squamous cell carcinoma.
    Article Snippet: .. List of antibodies used in this study Application Antibody Catalog / Clone No. (Company) IHC CD3 #85061 (Cell Signaling AR TIC LE IN PR ES S 90 Technology) CD57 clone TB01 (Dako) CD155 #81254 (Cell Signaling Technology) CD111 HPA026846 (Atlas Antibodies) CD112 #95333 (Cell Signaling Technology) CD113 HPA011038 (Atlas Antibodies) TIGIT NB2-79794 (Novus Biologicals) CD226 HPA015715 (Atlas Antibodies) CD96 HPA066754 (Atlas Antibodies) CD3 #85061 (Cell Signaling Technology) CD57 clone TB01 (Dako) (Human) CD155 #81254 (Cell Signaling Technology) CD155 ab233102 (Abcam) CD112 27171-1-AP (Proteintech) CD111 24713-1-AP (Proteintech) CD113 LS-C210246 (LSBio) PCNA sc-56 (Santa Cruz Biotechnology) cleaved caspase-3 #9664 (Cell Signaling Technology) P-H2AX #9718 (Cell Signaling Technology) IHC (Mouse) Ki67 ab16667 (Abcam) CD155 #81254 (Cell Signaling Technology) CD111 sc-21722 (Santa Cruz Biotechnology) CD112 #95333 (Cell Signaling Technology) CD113 sc-69714 (Santa Cruz Biotechnology) Western Blot (Human) β-actin #4970 (Cell Signaling Technology) Western Blot CD155 ab16667 (Abcam) AR TIC LE IN PR ES S 91 CD112 ab135246 (Abcam) CD111 sc-21722 (Santa Cruz Biotechnology) CD113 sc-271611 (Santa Cruz Biotechnology) (Mouse) β-actin #4970 (Cell Signaling Technology) CD45.2-Pacific Blue clone 104 (BioLegend) CD3-APC-Cy7 clone 145-2C11 (BioLegend) TIGIT-PE clone 1G9 (BioLegend) CD96-APC clone 3.3 (BioLegend) CD226-FITC clone 10E5 (BioLegend) CD25-FITC clone PC61 (BioLegend) FOXP3-PE clone MF-14 (BioLegend) CD226-PE-Cy7 clone 10E5 (BioLegend) CD4-APC clone RM4-4 (BioLegend) CD3-APC-Cy7 clone 17A2 (BioLegend) CD45-Pacific Blue clone S18009F (BioLegend) IFN-γ-FITC clone XMG1.2 (BioLegend) IL-4-PE-Cy7 clone 11B11 (BioLegend) CD8a-PE clone 53-6.7 (BioLegend) CD107a-FITC clone 1D4B (BioLegend) Perforin-APC clone S16009A (BioLegend) CD8a-PE-Cy7 clone 53-6.7 (BioLegend) CD4-PerCP-Cy5.5 clone GK1.5 (BioLegend) Granzyme B-PE clone NGZB (eBioscience) CD155-PE clone 4.24.1 (BioLegend) Flow Cytometry (Mouse) CD112-PE clone 829038 (R&D Systems) Anti-mouse TIGIT #BE037 / clone 1G9 (Bio X Cell) Anti-mouse CD96 #BE0174 / clone 3.3 (Bio X Cell) In Vivo Treatment (Mouse) Mouse IgG1 Isotype Control #BE0083 / clone MOPC-21 (Bio X Cell) 1810 1811 1812 1813 AR TIC LE IN PR ES S 92 1814 1815 1816 1817 1818 1819 1820 1821 1822 1823 Table S2. ..

    Article Title: Post-radiation targeting of TIGIT and CD96 improved immunotherapy efficacy in head and neck squamous cell carcinoma.
    Article Snippet: .. List of antibodies used in this study Application Antibody Catalog / Clone No. (Company) CD3 #85061 (Cell Signaling Technology) CD57 clone TB01 (Dako) CD155 #81254 (Cell Signaling Technology) CD111 HPA026846 (Atlas Antibodies) CD112 #95333 (Cell Signaling Technology) CD113 HPA011038 (Atlas Antibodies) TIGIT NB2-79794 (Novus Biologicals) CD226 HPA015715 (Atlas Antibodies) CD96 HPA066754 (Atlas Antibodies) CD3 #85061 (Cell Signaling Technology) CD57 clone TB01 (Dako) IHC (Human) CD155 #81254 (Cell Signaling Technology) CD155 ab233102 (Abcam) CD112 27171-1-AP (Proteintech) CD111 24713-1-AP (Proteintech) CD113 LS-C210246 (LSBio) PCNA sc-56 (Santa Cruz Biotechnology) Cleaved Caspase-3 #9664 (Cell Signaling Technology) P-H2AX #9718 (Cell Signaling Technology) IHC (Mouse) Ki67 ab16667 (Abcam) CD155 #81254 (Cell Signaling Technology) CD111 sc-21722 (Santa Cruz Biotechnology) CD112 #95333 (Cell Signaling Technology) Western Blot (Human) CD113 sc-69714 (Santa Cruz AR TIC LE IN PR ES S 2 Biotechnology) β-actin #4970 (Cell Signaling Technology) CD155 ab16667 (Abcam) CD112 ab135246 (Abcam) CD111 sc-21722 (Santa Cruz Biotechnology) CD113 sc-271611 (Santa Cruz Biotechnology) Western Blot (Mouse) β-actin #4970 (Cell Signaling Technology) CD45.2-Pacific Blue clone 104 (BioLegend) CD3-APC-Cy7 clone 145-2C11 (BioLegend) TIGIT-PE clone 1G9 (BioLegend) CD96-APC clone 3.3 (BioLegend) CD226-FITC clone 10E5 (BioLegend) CD25-FITC clone PC61 (BioLegend) FOXP3-PE clone MF-14 (BioLegend) CD226-PE-Cy7 clone 10E5 (BioLegend) CD4-APC clone RM4-4 (BioLegend) CD3-APC-Cy7 clone 17A2 (BioLegend) CD45-Pacific Blue clone S18009F (BioLegend) IFN-γ-FITC clone XMG1.2 (BioLegend) IL-4-PE-Cy7 clone 11B11 (BioLegend) CD8a-PE clone 53-6.7 (BioLegend) CD107a-FITC clone 1D4B (BioLegend) Perforin-APC clone S16009A (BioLegend) CD8a-PE-Cy7 clone 53-6.7 (BioLegend) CD4-PerCP-Cy5.5 clone GK1.5 (BioLegend) Granzyme B-PE clone NGZB (eBioscience) CD155-PE clone 4.24.1 (BioLegend) Flow Cytometry (Mouse) CD112-PE clone 829038 (R&D Systems) Anti-mouse TIGIT #BE037 / clone 1G9 (Bio X Cell) Anti-mouse CD96 #BE0174 / clone 3.3 (Bio X Cell) In Vivo Treatment (Mouse) Mouse IgG1 Isotype Control #BE0083 / clone MOPC-21 (Bio X Cell) 2 AR TIC LE IN PR ES S Table S2. ..

    Control:

    Article Title: Post-radiation targeting of TIGIT and CD96 improved immunotherapy efficacy in head and neck squamous cell carcinoma.
    Article Snippet: .. List of antibodies used in this study Application Antibody Catalog / Clone No. (Company) IHC CD3 #85061 (Cell Signaling AR TIC LE IN PR ES S 90 Technology) CD57 clone TB01 (Dako) CD155 #81254 (Cell Signaling Technology) CD111 HPA026846 (Atlas Antibodies) CD112 #95333 (Cell Signaling Technology) CD113 HPA011038 (Atlas Antibodies) TIGIT NB2-79794 (Novus Biologicals) CD226 HPA015715 (Atlas Antibodies) CD96 HPA066754 (Atlas Antibodies) CD3 #85061 (Cell Signaling Technology) CD57 clone TB01 (Dako) (Human) CD155 #81254 (Cell Signaling Technology) CD155 ab233102 (Abcam) CD112 27171-1-AP (Proteintech) CD111 24713-1-AP (Proteintech) CD113 LS-C210246 (LSBio) PCNA sc-56 (Santa Cruz Biotechnology) cleaved caspase-3 #9664 (Cell Signaling Technology) P-H2AX #9718 (Cell Signaling Technology) IHC (Mouse) Ki67 ab16667 (Abcam) CD155 #81254 (Cell Signaling Technology) CD111 sc-21722 (Santa Cruz Biotechnology) CD112 #95333 (Cell Signaling Technology) CD113 sc-69714 (Santa Cruz Biotechnology) Western Blot (Human) β-actin #4970 (Cell Signaling Technology) Western Blot CD155 ab16667 (Abcam) AR TIC LE IN PR ES S 91 CD112 ab135246 (Abcam) CD111 sc-21722 (Santa Cruz Biotechnology) CD113 sc-271611 (Santa Cruz Biotechnology) (Mouse) β-actin #4970 (Cell Signaling Technology) CD45.2-Pacific Blue clone 104 (BioLegend) CD3-APC-Cy7 clone 145-2C11 (BioLegend) TIGIT-PE clone 1G9 (BioLegend) CD96-APC clone 3.3 (BioLegend) CD226-FITC clone 10E5 (BioLegend) CD25-FITC clone PC61 (BioLegend) FOXP3-PE clone MF-14 (BioLegend) CD226-PE-Cy7 clone 10E5 (BioLegend) CD4-APC clone RM4-4 (BioLegend) CD3-APC-Cy7 clone 17A2 (BioLegend) CD45-Pacific Blue clone S18009F (BioLegend) IFN-γ-FITC clone XMG1.2 (BioLegend) IL-4-PE-Cy7 clone 11B11 (BioLegend) CD8a-PE clone 53-6.7 (BioLegend) CD107a-FITC clone 1D4B (BioLegend) Perforin-APC clone S16009A (BioLegend) CD8a-PE-Cy7 clone 53-6.7 (BioLegend) CD4-PerCP-Cy5.5 clone GK1.5 (BioLegend) Granzyme B-PE clone NGZB (eBioscience) CD155-PE clone 4.24.1 (BioLegend) Flow Cytometry (Mouse) CD112-PE clone 829038 (R&D Systems) Anti-mouse TIGIT #BE037 / clone 1G9 (Bio X Cell) Anti-mouse CD96 #BE0174 / clone 3.3 (Bio X Cell) In Vivo Treatment (Mouse) Mouse IgG1 Isotype Control #BE0083 / clone MOPC-21 (Bio X Cell) 1810 1811 1812 1813 AR TIC LE IN PR ES S 92 1814 1815 1816 1817 1818 1819 1820 1821 1822 1823 Table S2. ..

    Article Title: Post-radiation targeting of TIGIT and CD96 improved immunotherapy efficacy in head and neck squamous cell carcinoma.
    Article Snippet: .. List of antibodies used in this study Application Antibody Catalog / Clone No. (Company) CD3 #85061 (Cell Signaling Technology) CD57 clone TB01 (Dako) CD155 #81254 (Cell Signaling Technology) CD111 HPA026846 (Atlas Antibodies) CD112 #95333 (Cell Signaling Technology) CD113 HPA011038 (Atlas Antibodies) TIGIT NB2-79794 (Novus Biologicals) CD226 HPA015715 (Atlas Antibodies) CD96 HPA066754 (Atlas Antibodies) CD3 #85061 (Cell Signaling Technology) CD57 clone TB01 (Dako) IHC (Human) CD155 #81254 (Cell Signaling Technology) CD155 ab233102 (Abcam) CD112 27171-1-AP (Proteintech) CD111 24713-1-AP (Proteintech) CD113 LS-C210246 (LSBio) PCNA sc-56 (Santa Cruz Biotechnology) Cleaved Caspase-3 #9664 (Cell Signaling Technology) P-H2AX #9718 (Cell Signaling Technology) IHC (Mouse) Ki67 ab16667 (Abcam) CD155 #81254 (Cell Signaling Technology) CD111 sc-21722 (Santa Cruz Biotechnology) CD112 #95333 (Cell Signaling Technology) Western Blot (Human) CD113 sc-69714 (Santa Cruz AR TIC LE IN PR ES S 2 Biotechnology) β-actin #4970 (Cell Signaling Technology) CD155 ab16667 (Abcam) CD112 ab135246 (Abcam) CD111 sc-21722 (Santa Cruz Biotechnology) CD113 sc-271611 (Santa Cruz Biotechnology) Western Blot (Mouse) β-actin #4970 (Cell Signaling Technology) CD45.2-Pacific Blue clone 104 (BioLegend) CD3-APC-Cy7 clone 145-2C11 (BioLegend) TIGIT-PE clone 1G9 (BioLegend) CD96-APC clone 3.3 (BioLegend) CD226-FITC clone 10E5 (BioLegend) CD25-FITC clone PC61 (BioLegend) FOXP3-PE clone MF-14 (BioLegend) CD226-PE-Cy7 clone 10E5 (BioLegend) CD4-APC clone RM4-4 (BioLegend) CD3-APC-Cy7 clone 17A2 (BioLegend) CD45-Pacific Blue clone S18009F (BioLegend) IFN-γ-FITC clone XMG1.2 (BioLegend) IL-4-PE-Cy7 clone 11B11 (BioLegend) CD8a-PE clone 53-6.7 (BioLegend) CD107a-FITC clone 1D4B (BioLegend) Perforin-APC clone S16009A (BioLegend) CD8a-PE-Cy7 clone 53-6.7 (BioLegend) CD4-PerCP-Cy5.5 clone GK1.5 (BioLegend) Granzyme B-PE clone NGZB (eBioscience) CD155-PE clone 4.24.1 (BioLegend) Flow Cytometry (Mouse) CD112-PE clone 829038 (R&D Systems) Anti-mouse TIGIT #BE037 / clone 1G9 (Bio X Cell) Anti-mouse CD96 #BE0174 / clone 3.3 (Bio X Cell) In Vivo Treatment (Mouse) Mouse IgG1 Isotype Control #BE0083 / clone MOPC-21 (Bio X Cell) 2 AR TIC LE IN PR ES S Table S2. ..



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    Image Search Results


    The interaction between CD4+/CD8+ T cells and antigen-presenting cells (APCs) or tumor cells is regulated by various immune checkpoints, such as the activating checkpoint CD226-CD155, and inhibitory checkpoints including TIGIT-CD155, Tim-3-Galectin-9, and PD1-PDL1. Activation of theseinhibitory checkpoints results in T cell exhaustion and/or functional impairment. Hyperthermia treatment has been shown to upregulate the expressionof TIGIT, Tim-3, and PD1 molecules on T cells, thereby enhancing their responsiveness to immune checkpoint blockade with monoclonal antibodies.

    Journal: Frontiers in Immunology

    Article Title: Recent advances in preclinical studies combining hyperthermia therapy with novel immune checkpoint targeting agents

    doi: 10.3389/fimmu.2026.1722115

    Figure Lengend Snippet: The interaction between CD4+/CD8+ T cells and antigen-presenting cells (APCs) or tumor cells is regulated by various immune checkpoints, such as the activating checkpoint CD226-CD155, and inhibitory checkpoints including TIGIT-CD155, Tim-3-Galectin-9, and PD1-PDL1. Activation of theseinhibitory checkpoints results in T cell exhaustion and/or functional impairment. Hyperthermia treatment has been shown to upregulate the expressionof TIGIT, Tim-3, and PD1 molecules on T cells, thereby enhancing their responsiveness to immune checkpoint blockade with monoclonal antibodies.

    Article Snippet: The inhibitory checkpoints, including PD-1/PD-L1, CTLA-4/CD80/CD86, TIGIT/CD155, Tim-3/Galectin-9, CD47/SIRPα, LAG3/MHC, negatively regulate the activity of immune cells to avoid excessive response such as “cytokine storm”.

    Techniques: Activation Assay, Functional Assay, Bioprocessing

    Co-expression of DNAM-1, TACTILE, and TIGIT is correlated with NK cell infiltration in PDAC tumors. A Pie charts illustrating the proportion of T cell subsets expressing DNAM-1, TACTILE, and/or TIGIT. For each subset, pie charts represent cells from peripheral blood (upper row) and tissue (lower row). Pie segments and arcs are color-coded to indicate the expression categories: DNAM-1 + (dark blue arcs), TACTILE + (dark green arcs), TIGIT + (light green arcs), and combinations thereof as defined in the legend below. B Heatmap depicting the absolute difference per T cell subset expressing DNAM-1, TACTILE, and/or TIGIT. The color bar represents the absolute difference in percentage, with decrease (blue) and increase (red) in the tumor. Statistical significance was determined using a linear mixed-effects model. Benjamini-Hochberg correction was applied to adjust p -values. Adjusted p -values < 0.05 were considered significant and depicted in bold with an *. C Pie charts illustrate the proportion of NK cell subsets expressing DNAM-1, TACTILE, and/or TIGIT. The same color legend was used as in A. D Heatmap depicting the absolute difference per NK cell subset expressing DNAM-1, TACTILE, and/or TIGIT. The color bar represents the absolute difference in percentage, with decrease (blue) and increase (red) in the tumor. Statistical significance was determined using a linear mixed-effects model. Benjamini–Hochberg correction was applied to adjust p -values. Adjusted p -values < 0.05 were considered significant and depicted in bold with an *. E Correlation analysis depicting association between the expression of DNAM-1 and NK cell infiltration in PDAC tissue samples. The left panel shows the correlation between the proportion of DNAM-1 + NK cells expressed by the frequency of CD45 + cells (FOCD45). The right panel shows the correlation between geometric mean of DNAM-1 on NK cells. Data points represent individual samples, with the red line indicating the best-fit linear regression and the shaded area representing the confidence interval. Spearman correlation coefficients ( R ) and p -values are depicted. F Correlation analysis depicting association between the gene expression of DNAM-1 and CD155 (left panel) or CD112 (right panel) obtained from TCGA data from PDAC patients. Data points represent individual samples, with the red line indicating the best-fit linear regression and the shaded area representing the confidence interval. Spearman correlation coefficients ( R ) and p -values are depicted

    Journal: Cancer Immunology, Immunotherapy : CII

    Article Title: Protein-level profiling of TIGIT axis components in human PDAC reveals immune–suppressive expression patterns

    doi: 10.1007/s00262-026-04343-w

    Figure Lengend Snippet: Co-expression of DNAM-1, TACTILE, and TIGIT is correlated with NK cell infiltration in PDAC tumors. A Pie charts illustrating the proportion of T cell subsets expressing DNAM-1, TACTILE, and/or TIGIT. For each subset, pie charts represent cells from peripheral blood (upper row) and tissue (lower row). Pie segments and arcs are color-coded to indicate the expression categories: DNAM-1 + (dark blue arcs), TACTILE + (dark green arcs), TIGIT + (light green arcs), and combinations thereof as defined in the legend below. B Heatmap depicting the absolute difference per T cell subset expressing DNAM-1, TACTILE, and/or TIGIT. The color bar represents the absolute difference in percentage, with decrease (blue) and increase (red) in the tumor. Statistical significance was determined using a linear mixed-effects model. Benjamini-Hochberg correction was applied to adjust p -values. Adjusted p -values < 0.05 were considered significant and depicted in bold with an *. C Pie charts illustrate the proportion of NK cell subsets expressing DNAM-1, TACTILE, and/or TIGIT. The same color legend was used as in A. D Heatmap depicting the absolute difference per NK cell subset expressing DNAM-1, TACTILE, and/or TIGIT. The color bar represents the absolute difference in percentage, with decrease (blue) and increase (red) in the tumor. Statistical significance was determined using a linear mixed-effects model. Benjamini–Hochberg correction was applied to adjust p -values. Adjusted p -values < 0.05 were considered significant and depicted in bold with an *. E Correlation analysis depicting association between the expression of DNAM-1 and NK cell infiltration in PDAC tissue samples. The left panel shows the correlation between the proportion of DNAM-1 + NK cells expressed by the frequency of CD45 + cells (FOCD45). The right panel shows the correlation between geometric mean of DNAM-1 on NK cells. Data points represent individual samples, with the red line indicating the best-fit linear regression and the shaded area representing the confidence interval. Spearman correlation coefficients ( R ) and p -values are depicted. F Correlation analysis depicting association between the gene expression of DNAM-1 and CD155 (left panel) or CD112 (right panel) obtained from TCGA data from PDAC patients. Data points represent individual samples, with the red line indicating the best-fit linear regression and the shaded area representing the confidence interval. Spearman correlation coefficients ( R ) and p -values are depicted

    Article Snippet: Other slides were manually stained with antibodies targeting CD155 (Cell Signaling Technology Cat# 81254, RRID:AB_2799970), CD112 (Sigma-Aldrich Cat# HPA012759, RRID:AB_1846227), CD111 (Santa Cruz Biotechnology Cat# sc-21722, RRID:AB_626865), and CD113 (Sigma-Aldrich Cat# SAB1402559, RRID:AB_10638278).

    Techniques: Expressing, Gene Expression

    High CD155 and CD112 co-expression among nectin family ligands suggests immune evasion via the TIGIT axis in PDAC A Representative histological images of tumor tissue stained with hematoxylin and eosin (HE) and immunohistochemistry staining for CD155, CD112, and CD111. B Dot plots quantifying the percentage of positive tumor cell scores (%) for CD155, CD112, and CD111. Each dot represents the percentage of positive tumor cells in individual samples, with horizontal lines indicating the mean value Shapiro–Wilk test was used to assess normality, and Friedman test was used to determine statistical significance between groups, p < 0.05 was considered significant. C Bar plot showing the mean positive tumor cell scores (%) for CD155, CD112, and CD111 across different tumor stages. Each dot represents an individual sample. D Correlation plot illustrating the correlation between CD112 and CD155 ligand expression determined by immune histochemistry. Each data point represents an individual sample, with the red line indicating the best-fit linear regression and the shaded area representing the confidence interval. Spearman correlation coefficients ( R ) and p -values are depicted. E Heatmap bubble plot displaying the correlation between ligand expression levels. The color intensity represents the Spearman correlation coefficient, while bubble size indicates the statistical significance, as shown in the color legend

    Journal: Cancer Immunology, Immunotherapy : CII

    Article Title: Protein-level profiling of TIGIT axis components in human PDAC reveals immune–suppressive expression patterns

    doi: 10.1007/s00262-026-04343-w

    Figure Lengend Snippet: High CD155 and CD112 co-expression among nectin family ligands suggests immune evasion via the TIGIT axis in PDAC A Representative histological images of tumor tissue stained with hematoxylin and eosin (HE) and immunohistochemistry staining for CD155, CD112, and CD111. B Dot plots quantifying the percentage of positive tumor cell scores (%) for CD155, CD112, and CD111. Each dot represents the percentage of positive tumor cells in individual samples, with horizontal lines indicating the mean value Shapiro–Wilk test was used to assess normality, and Friedman test was used to determine statistical significance between groups, p < 0.05 was considered significant. C Bar plot showing the mean positive tumor cell scores (%) for CD155, CD112, and CD111 across different tumor stages. Each dot represents an individual sample. D Correlation plot illustrating the correlation between CD112 and CD155 ligand expression determined by immune histochemistry. Each data point represents an individual sample, with the red line indicating the best-fit linear regression and the shaded area representing the confidence interval. Spearman correlation coefficients ( R ) and p -values are depicted. E Heatmap bubble plot displaying the correlation between ligand expression levels. The color intensity represents the Spearman correlation coefficient, while bubble size indicates the statistical significance, as shown in the color legend

    Article Snippet: Other slides were manually stained with antibodies targeting CD155 (Cell Signaling Technology Cat# 81254, RRID:AB_2799970), CD112 (Sigma-Aldrich Cat# HPA012759, RRID:AB_1846227), CD111 (Santa Cruz Biotechnology Cat# sc-21722, RRID:AB_626865), and CD113 (Sigma-Aldrich Cat# SAB1402559, RRID:AB_10638278).

    Techniques: Expressing, Staining, Immunohistochemistry

    (A) Display of ULBP1 and CD155 on CombiCells detected by mAbs and NKG2D-Fc, and DNAM-1-Fc, respectively. (B&C) KIR2DL1+ and KIR2DL1-NK-cell degranulation (CD107a upregulation) in response to ULBP1, CD155, and HLA-C*05:01 displayed on CombiCells. (C) Three types of HLA-C*05:01 were tested, all containing P2 (IIDKSGSTV); wild-type, open and dipeptide exchanged. Data from three independent experiments with NK cells from separate donors are shown.

    Journal: bioRxiv

    Article Title: Using peptide-exchange systems to interrogate peptide-specific KIR binding to HLA Class I

    doi: 10.64898/2026.03.03.708729

    Figure Lengend Snippet: (A) Display of ULBP1 and CD155 on CombiCells detected by mAbs and NKG2D-Fc, and DNAM-1-Fc, respectively. (B&C) KIR2DL1+ and KIR2DL1-NK-cell degranulation (CD107a upregulation) in response to ULBP1, CD155, and HLA-C*05:01 displayed on CombiCells. (C) Three types of HLA-C*05:01 were tested, all containing P2 (IIDKSGSTV); wild-type, open and dipeptide exchanged. Data from three independent experiments with NK cells from separate donors are shown.

    Article Snippet: Plasmids encoding the ectodomains of ULBP1 (pD649-HAsp-ULBP1-Fc(DAPA)-AviTag-6xHis) and CD155 (pMP71-hCD155) were obtained from Addgene. pMP71-hCD155 was a gift from Sébastien Walchli (Addgene plasmid # 118630; http://n2t.net/addgene:118630 ; RRID:Addgene_118630) [ ]. pD649-HAsp-ULBP1-Fc(DAPA)-AviTag-6xHis was a gift from Chris Garcia (Addgene plasmid # 156597; http://n2t.net/addgene:156597 ; RRID:Addgene_156597) [ ].

    Techniques: