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Image Search Results
Journal: Blood
Article Title: Galectin-5 is bound onto the surface of rat reticulocyte exosomes and modulates vesicle uptake by macrophages.
doi: 10.1182/blood-2009-07-231449
Figure Lengend Snippet: Figure 1. Galectin-5 is present on the surface of rat red cells. (A) Freshly isolated reticulocytes or erythrocytes were adsorbed on glass coverslips and processed for immunofluorescence as described in “Fluorescence-activated cell-sorting analysis of exosomes and red cells, fluorescence microscopy of red cells.” Transmission images of red cells (left) and corresponding fluorescence imaging (right) were recorded on cells by the use of purified rabbit anti–galectin-5 antibody followed by incubation withAlexa 488 anti–rabbit antibody. (B) Young reticulocytes and erythrocytes were analyzed by flow cytometry by the use of antibodies raised against Gal-2 (dashed line), Gal-4 (dotted line), and Gal-5 (solid line), already tested for their specificity (top), or the produced anti–galectin-5 serum (solid line) and the preimmune serum (bottom, dashed line). Tinted patterns indicate cell labeling obtained in the absence of primary antibodies. (C) Lymphocytes isolated from rat blood, as described in “Cells,” were analyzed by flow cytometry for Gal-5 (left, solid line), CD47 (middle, solid line) and Syto 16 green (right, solid line). Tinted patterns indicate cell labeling in the absence of primary antibodies. (D) Ghost and raft extracts isolated from reticulocytes or mature erythrocytes, as described in “Red cell subcellular fractionation,” were processed by SDS-PAGE and analyzed by Western blot for the indicated proteins. The molecular mass (kDa) standards are indicated on the left.
Article Snippet: Mouse
Techniques: Isolation, Fluorescence, FACS, Microscopy, Transmission Assay, Imaging, Incubation, Cytometry, Produced, Labeling, Fractionation, SDS Page, Western Blot
Journal: Journal of immunology (Baltimore, Md. : 1950)
Article Title: Costimulatory pathways in multiple sclerosis: distinctive expression of PD-1 and PD-L1 in patients with different patterns of disease.
doi: 10.4049/jimmunol.0901038
Figure Lengend Snippet: FIGURE 1. MBP-stimulated CD4 and CD8 expressing PD-1. Representative results of MBP-stimulated PBMC of patients with either AMS or SMS are shown. Top panels, PD-1-expressing MBP-stimulated CD4 T lymphocytes. Bottom panels, PD-1-expressing MBP-stimulated CD8 T lymphocytes. In the upper right corners, the percentage of CD4/PD-1 and CD8/PD-1 T cells relative to the total number of lymphocytes are indicated. Summary results obtained in AMS and SMS patients are presented in A and B. The boxes stretch from the 25th to the 75th percentile; the lines across the boxes indicate the median values; the lines stretching from the boxes indicate extreme values. Statistical significance is shown.
Article Snippet: The following mAbs were used in this study: anti-human CD4 (clone 13B8.2; mouse IgG2a isotype), anti-human CD14 (clone 116; mouse IgG1 isotype), anti-human CD19 (clone J4.119; mouse IgG1 isotype) coupled to R-PE-Cyanine 5 Tandem (PE-Cy5; Caltag Laboratories);
Techniques: Expressing
Journal: Journal of immunology (Baltimore, Md. : 1950)
Article Title: Costimulatory pathways in multiple sclerosis: distinctive expression of PD-1 and PD-L1 in patients with different patterns of disease.
doi: 10.4049/jimmunol.0901038
Figure Lengend Snippet: FIGURE 4. Annexin V- and PD-1-expressing MBP-stimulated CD4 and CD8 T lymphocytes. Representative results of MBP-stimulated PBMC of patients with either AMS or SMS are shown. Top panels, MBP-stimulated CD4 T lymphocytes expressing annexin V and PD-1. Bottom panels, MBP-stimulated CD8 T lymphocytes expressing annexin V and PD-1. Summary results obtained in AMS and SMS patients are presented in A and B. The boxes stretch from the 25th to the 75th percentile; the lines across the boxes indicate the median values; the lines stretching from the boxes indicate extreme values. Statistical significance is shown.
Article Snippet: The following mAbs were used in this study: anti-human CD4 (clone 13B8.2; mouse IgG2a isotype), anti-human CD14 (clone 116; mouse IgG1 isotype), anti-human CD19 (clone J4.119; mouse IgG1 isotype) coupled to R-PE-Cyanine 5 Tandem (PE-Cy5; Caltag Laboratories);
Techniques: Expressing
Journal: Journal of immunology (Baltimore, Md. : 1950)
Article Title: Costimulatory pathways in multiple sclerosis: distinctive expression of PD-1 and PD-L1 in patients with different patterns of disease.
doi: 10.4049/jimmunol.0901038
Figure Lengend Snippet: FIGURE 5. pAkt-expressing MBP-stimulated CD4 and CD8 T lymphocytes. Representative results of MBP-stimulated PBMC of patients with either AMS or stable SMS are shown. Top panels, MBP-stimulated CD4 T lymphocytes expressing pAkt. Bottom panels, MBP-stimulated CD8 T lymphocytes expressing pAkt. Summary results obtained in AMS and SMS patients are presented in A and B. The boxes stretch from the 25th to the 75th percentile; the lines across the boxes indicate the median values; the lines stretching from the boxes indicate extreme values. Statistical significance is shown.
Article Snippet: The following mAbs were used in this study: anti-human CD4 (clone 13B8.2; mouse IgG2a isotype), anti-human CD14 (clone 116; mouse IgG1 isotype), anti-human CD19 (clone J4.119; mouse IgG1 isotype) coupled to R-PE-Cyanine 5 Tandem (PE-Cy5; Caltag Laboratories);
Techniques: Expressing
Journal: Journal of immunology (Baltimore, Md. : 1950)
Article Title: Costimulatory pathways in multiple sclerosis: distinctive expression of PD-1 and PD-L1 in patients with different patterns of disease.
doi: 10.4049/jimmunol.0901038
Figure Lengend Snippet: FIGURE 6. Blockade of the PD-1-PD-L1 pathway. pAKT-expressing, MBP-stimulated CD4 and CD8 T lymphocytes.
Article Snippet: The following mAbs were used in this study: anti-human CD4 (clone 13B8.2; mouse IgG2a isotype), anti-human CD14 (clone 116; mouse IgG1 isotype), anti-human CD19 (clone J4.119; mouse IgG1 isotype) coupled to R-PE-Cyanine 5 Tandem (PE-Cy5; Caltag Laboratories);
Techniques: Expressing
Journal: Laboratory investigation; a journal of technical methods and pathology
Article Title: RETRACTED: Blockade of TNF-α signaling suppresses the AREG-mediated IL-6 and IL-8 cytokines secretion induced by anti-Ro/SSA autoantibodies.
doi: 10.1038/labinvest.2010.168
Figure Lengend Snippet: Figure 1 Semiquantitative RT-PCR and real-time PCR for Furin, TACE and AREG genes expression. (a) RT-PCR analysis of Furin, TACE and AREG mRNA extracted from SGEC treated with anti-Ro/SSA autoantibodies. M, marker; control, untreated SGEC; HIgG, SGEC treated with IgG fractions extracted from sera of healthy donors; anti-Ro, SGEC treated with anti-Ro/SSA autoantibodies. RT-PCR of GADPH was used as control. Band intensities were analyzed by densitometry (b). (c) Real-time PCR for Furin, TACE and AREG genes expression. Representative histograms of mRNA levels of Furin, TACE and AREG in untreated SGEC (control), SGEC treated with healthy IgG (HIgG), anti-Ro/SSA autoantibodies (anti-Ro). The mRNA levels of the housekeeping gene, b-2 microglobulin, were quantified between untreated control cells and variously treated cells (data represent the mean±s.e. of five independent experiments).
Article Snippet: Membranes were incubated for 90 min with rabbit anti-human Furin polyclonal antibody (pAb), goat antihuman TACE pAb (both from Santa Cruz Biotechnology, Santa Cruz, CA, USA),
Techniques: Reverse Transcription Polymerase Chain Reaction, Real-time Polymerase Chain Reaction, Expressing, Marker, Control
Journal: Laboratory investigation; a journal of technical methods and pathology
Article Title: RETRACTED: Blockade of TNF-α signaling suppresses the AREG-mediated IL-6 and IL-8 cytokines secretion induced by anti-Ro/SSA autoantibodies.
doi: 10.1038/labinvest.2010.168
Figure Lengend Snippet: Figure 2 Analysis of Furin, TACE and AREG expression in anti-Ro/SSA Abs-treated SGEC. (a) Flow cytometric analysis of Furin, TACE and AREG expression in SGEC after anti-Ro/SSA Abs treatment. Examples of flow cytometric images from one representative experiment. (A) Furin expression analysis in untreated and anti-Ro/SSA or HIgG-treated SGEC; (B) intracellular active TACE expression analysis in untreated and anti-Ro/SSA or HIgG-treated SGEC; (C) AREG expression analysis in untreated and anti-Ro/SSA or HIgG-treated SGEC. (b) Western blot analysis of Furin, TACE and AREG proteins expression in SGEC treated or not with anti-Ro/SSA. Immunoblotting gave rise to bands of the expected size (97 kDa for Furin, 80 kDa for active TACE and 50 kDa for AREG). b-Actin was used as protein loading control. (c) Detection of soluble AREG by ELISA. Secreted AREG was detected by ELISA in the conditioned medium. Control, untreated SGEC; HIgG, SGEC treated with IgG fractions extracted from sera of healthy donors; anti-Ro, SGEC treated with anti-Ro/SSA autoantibodies. (Data represent the mean±s.e. of four independent experiments).
Article Snippet: Membranes were incubated for 90 min with rabbit anti-human Furin polyclonal antibody (pAb), goat antihuman TACE pAb (both from Santa Cruz Biotechnology, Santa Cruz, CA, USA),
Techniques: Expressing, Western Blot, Control, Enzyme-linked Immunosorbent Assay