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R&D Systems
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Image Search Results
Journal: The Journal of infectious diseases
Article Title: Osteopontin impairs host defense during pneumococcal pneumonia.
doi: 10.1093/infdis/jir185
Figure Lengend Snippet: Figure 1. Pulmonary and plasma osteopontin concentrations are elevated during pneumococcal pneumonia. Osteopontin concentrations in (A) lung and (B) plasma before and 6, 24, and 48 h after infection with 104 colony-forming units of Streptococcus pneumoniae. Data are expressed as mean 6 standard error of the mean (SEM); n 5 8 mice per group. Asterisk, P , .05; double asterisk, P , .01; triple asterisk, P , .001, compared with t 5 0. Osteopontin concentrations in culture supernatants after incubation of (C) MH-S cells and (D) primary alveolar macrophages with medium or growth- arrested S. pneumoniae (multiplicity of infection, 1:6 and 1:60 for MH-S cells; 1:20 and 1:200 for primary alveolar macrophages) for 4 h (MH-S cells) or 20 h (primary alveolar macrophages). Data are expressed as mean 6 SEM; n 5 3 per group. Asterisk, P ,.05, compared with medium. OPN, osteopontin.
Article Snippet: Effect of Osteopontin on S. pneumoniae Viability, Phagocytosis, and Phagolysosomal Fusion S. pneumoniae or Staphylococcus (S.) aureus (Newman strain) (1 3 106 bacteria/mL) was incubated in sterile normal saline in the presence of 0.8–800 ng/mL
Techniques: Clinical Proteomics, Infection, Incubation
Journal: The Journal of infectious diseases
Article Title: Osteopontin impairs host defense during pneumococcal pneumonia.
doi: 10.1093/infdis/jir185
Figure Lengend Snippet: Figure 2. Prolonged survival and reduced bacterial growth in osteopontin knockout (KO) mice. A, Percentage survival of wild-type (WT) mice (filled symbols) and osteopontin KO mice (open symbols) after intranasal infection with 104 colony-forming units (CFU) of Streptococcus pneumoniae (n 5 14 mice per group). P value indicates the difference between groups. WT (gray) and osteopontin KO (white) mice were infected with 104 CFU of S. pneumoniae, and bacterial loads were determined 6, 24, and 48 h after infection in (B) lung, (C) blood, and (D) spleen. Data are expressed as box-and- whisker diagrams depicting the smallest observation, lower quartile, median, upper quartile, and largest observation; n 5 8 mice per group; asterisk, P ,.05; double asterisk, P ,.01; triple asterisk, P ,.001, compared with WT mice. Note to panels C and D: none of the mice in either group displayed positive blood or spleen culture results 6 h after infection; at 24 h, S. pneumoniae could be cultured from samples of the blood of only 3 of 8 osteopontin KO mice, compared with 7 of 8 WT mice and from the spleen tissue of only 1 of 7 osteopontin KO mice, compared with 7 of 8 WT mice (P , .05 and P , .01, respectively). OPN, osteopontin.
Article Snippet: Effect of Osteopontin on S. pneumoniae Viability, Phagocytosis, and Phagolysosomal Fusion S. pneumoniae or Staphylococcus (S.) aureus (Newman strain) (1 3 106 bacteria/mL) was incubated in sterile normal saline in the presence of 0.8–800 ng/mL
Techniques: Knock-Out, Infection, Whisker Assay, Cell Culture
Journal: The Journal of infectious diseases
Article Title: Osteopontin impairs host defense during pneumococcal pneumonia.
doi: 10.1093/infdis/jir185
Figure Lengend Snippet: Figure 3. Decreased lung histopathology in osteopontin knockout (KO) mice. Representative lung histology of wild-type (WT) (A, D, G) and osteopontin KO (B, E, H ) mice at 6 h (A–C ), 24 h (D–F ), and 48 h (G–I) after intranasal infection with 104 CFU of Streptococcus pneumoniae. The lung sections are representative for 8 mice per group per time point. Hematoxilin and eosin staining, original magnification, 310. Inflammation scores are expressed as mean 6 standard error of the mean (WT mice, black bars; osteopontin KO mice, white bars; n 5 8 mice per group). Double asterisk, P ,.01, compared with WT mice. OPN, osteopontin.
Article Snippet: Effect of Osteopontin on S. pneumoniae Viability, Phagocytosis, and Phagolysosomal Fusion S. pneumoniae or Staphylococcus (S.) aureus (Newman strain) (1 3 106 bacteria/mL) was incubated in sterile normal saline in the presence of 0.8–800 ng/mL
Techniques: Histopathology, Knock-Out, Infection, Staining
Journal: The Journal of infectious diseases
Article Title: Osteopontin impairs host defense during pneumococcal pneumonia.
doi: 10.1093/infdis/jir185
Figure Lengend Snippet: Figure 4. Osteopontin stabilizes Streptococcus pneumoniae viability in vitro. A, S. pneumoniae in saline (106 colony-forming units [CFU]/mL) was incubated with increasing doses (0.8–800 ng/mL) of recombinant osteopontin (black symbols) or saline (white symbols), and the viability of S. pneumoniae was determined over 6 h at 37C. B, S. pneumoniae in saline (106 CFU/mL) was incubated with 800 ng/mL recombinant osteopontin (filled squares), 800 ng/mL boiled recombinant osteopontin (open squares), 800 ng/mL bovine serum albumin (triangles), or saline (circles), and the viability of S. pneumoniae was determined over 6 h at 37C. Dashed lines depict detection limits. C, Osteopontin binds to S. pneumoniae. Enzyme-linked immunosorbent assay plates were coated or not coated with 1 3 108 CFU/mL S. pneumoniae type 3 (ATCC 6303) or serotype 2 (D39); coating with anti-osteopontin IgG was used as positive control. Binding was assessed using biotin-labeled recombinant mouse osteopontin. Data are means 6 standard error (n 5 4–6). Double asterisk, P , .01 vs buffer. OPN, osteopontin.
Article Snippet: Effect of Osteopontin on S. pneumoniae Viability, Phagocytosis, and Phagolysosomal Fusion S. pneumoniae or Staphylococcus (S.) aureus (Newman strain) (1 3 106 bacteria/mL) was incubated in sterile normal saline in the presence of 0.8–800 ng/mL
Techniques: In Vitro, Saline, Incubation, Recombinant, Enzyme-linked Immunosorbent Assay, Positive Control, Binding Assay, Labeling
Journal: The Journal of infectious diseases
Article Title: Osteopontin impairs host defense during pneumococcal pneumonia.
doi: 10.1093/infdis/jir185
Figure Lengend Snippet: Figure 5. Similar bacterial growth during pneumococcal sepsis. Bacterial loads in (A) blood, (B) lung, (C) liver, and (D) spleen from wild-type (WT; gray) and osteopontin knockout (OPN KO; white) mice at 24 and 48 h after intravenous injection with 105 colony-forming units (CFU) of Streptococcus pneumoniae. Data are expressed as box-and-whisker diagrams depicting the smallest observation, lower quartile, median, upper quartile, and largest observation; n 5 8 mice per group. Dashed line depicts detection limit.
Article Snippet: Effect of Osteopontin on S. pneumoniae Viability, Phagocytosis, and Phagolysosomal Fusion S. pneumoniae or Staphylococcus (S.) aureus (Newman strain) (1 3 106 bacteria/mL) was incubated in sterile normal saline in the presence of 0.8–800 ng/mL
Techniques: Knock-Out, Injection, Whisker Assay
Journal: Cell
Article Title: Decoupling the Functional Pleiotropy of Stem Cell Factor by Tuning c-Kit Signaling
doi: 10.1016/j.cell.2017.02.011
Figure Lengend Snippet: (A) Ex vivo CFU-GM colony formation assay. Sorted mouse LSK HSPCs were cultured in semi-solid methylcellulose medium with 100 ng/ml recombinant mouse IL-3 and the indicated concentration of SCF variants. The number of CFU-GM colonies were scored after a 7-day period and normalized to the top data point in the 5000 ng/ml SCF group. (B) Ex vivo proliferation of purified LSK HSPCs from mouse bone marrow. Cells were cultured on irradiated OP9 stromal cells for 6 days in the presence of titrating concentrations of SCF variants, and the total number of hematopoietic cells generated was quantified. (C) β-hexosaminidase release by human PBCMCs treated with anti-IgE alone or with anti-IgE together with SCF or S4-3a at indicated concentrations (ng/ml) for 30 min in vitro. See also Figure S4. (D) Dose-response curves of IL-6 release by mouse BMCMCs stimulated for 6 h with SCF variants in vitro. (A and C) Data represent mean ± SEM and are pooled from at least two independent experiments with a total of n 6. *p<0.05, **p<0.01, ***p<0.001, and ns = not significant (i.e., p>0.05) compared to the PBS-treated control group by unpaired, two-tailed Student’s t test. (B and D) Data represent mean ± SEM and are representative of at least two independent experiments with n = 3 per experiment. The vertical dotted lines indicate the EC50 values of the dose-response curves. The numbers on top of the black arrows indicate the fold difference between the EC50s.
Article Snippet: Proliferation of HSPCs ex vivo 5000 mouse LSK HSPCs from GFP + C57B/6J mice were plated on irradiated (
Techniques: Ex Vivo, Colony Assay, Cell Culture, Recombinant, Concentration Assay, Purification, Irradiation, Generated, In Vitro, Control, Two Tailed Test
Journal: Cell
Article Title: Decoupling the Functional Pleiotropy of Stem Cell Factor by Tuning c-Kit Signaling
doi: 10.1016/j.cell.2017.02.011
Figure Lengend Snippet: KEY RESOURCES TABLE
Article Snippet: Proliferation of HSPCs ex vivo 5000 mouse LSK HSPCs from GFP + C57B/6J mice were plated on irradiated (
Techniques: Recombinant, Mutagenesis, Electron Microscopy, Staining, Modification, Giemsa Stain, Enzyme-linked Immunosorbent Assay, Plasmid Preparation, Endotoxin Assay, Selection, Bacteria, Expressing, Sequencing, Software, Diagnostic Assay, Live Cell Imaging
Journal: Cell reports
Article Title: IL-2 can signal via chemokine receptors to promote regulatory T cells’ suppressive function
doi: 10.1016/j.celrep.2023.112996
Figure Lengend Snippet:
Article Snippet:
Techniques: Control, Recombinant, Purification, Produced, Virus, Bacteria, Electron Microscopy, Emulsion, Staining, Cell Culture, Expressing, Transfection, Cell Isolation, Enzyme-linked Immunosorbent Assay, Endotoxin Assay, cDNA Synthesis, Mutagenesis, Plasmid Preparation, Software