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R&D Systems
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Image Search Results
Journal: American Journal of Translational Research
Article Title: Klotho mitigates diquat-induced myocardial injury in rats by activating Nrf2/ARE-mediated suppression of oxidative stress
doi: 10.62347/SKBR3572
Figure Lengend Snippet: Klotho alleviated DQ-induced cardiomyocyte oxidative stress. (A, B) Cell viability was examined using Cell Counting Kit-8 (CCK-8) assay. (C) Klotho protein levels were examined using western blot analysis. (D) DQ-stimulated H9c2 cardiomyocytes were treated with recombinant Klotho protein, followed by viability assessment using CCK-8 assay. (E, F) Apoptosis was examined using flow cytometry. (G, H) ROS fluorescence signal, (I) MDA level, (J) GSH-ST, (K) GSH-PX, and (L) SOD activities in H9c2 cells were assessed using ELISA kits. (M, N) Nrf2, HO-1, and NQO1 protein levels were examined using western blot analysis. Data were presented as mean ± SD. * P <0.05, ** P <0.01, compared to control group. ## P <0.01, compared to DQ group.
Article Snippet: To induce oxidative injury, cells were treated with 50 μM DQ (45422, Sigma-Aldrich, USA) for 24 h. For Klotho intervention, cells were treated with 1 μg/mL
Techniques: Cell Counting, CCK-8 Assay, Western Blot, Recombinant, Flow Cytometry, Fluorescence, Enzyme-linked Immunosorbent Assay, Control
Journal: American Journal of Translational Research
Article Title: Klotho mitigates diquat-induced myocardial injury in rats by activating Nrf2/ARE-mediated suppression of oxidative stress
doi: 10.62347/SKBR3572
Figure Lengend Snippet: Nrf2 inhibition abrogated the protective effects of Klotho on DQ-induced oxidative stress. DQ-stimulated H9c2 cells received recombinant Klotho protein and Nrf2 inhibitor ML385. (A, B) Nrf2, HO-1, and NQO1 protein levels were examined using western blot analysis. (C) Cell viability was examined using CCK-8 assay. (D, E) Apoptosis was examined using flow cytometry. (F, G) ROS fluorescence signal, (H) MDA level, (I) GSH-ST, (J) GSH-PX, and (K) SOD activities in H9c2 cells were assessed using ELISA kits. Data were presented as mean ± SD. ** P <0.01, compared to control group. ## P <0.01, compared to DQ group. && P <0.01, compared to DQ+Klotho group.
Article Snippet: To induce oxidative injury, cells were treated with 50 μM DQ (45422, Sigma-Aldrich, USA) for 24 h. For Klotho intervention, cells were treated with 1 μg/mL
Techniques: Inhibition, Recombinant, Western Blot, CCK-8 Assay, Flow Cytometry, Fluorescence, Enzyme-linked Immunosorbent Assay, Control
Journal: American Journal of Translational Research
Article Title: Klotho mitigates diquat-induced myocardial injury in rats by activating Nrf2/ARE-mediated suppression of oxidative stress
doi: 10.62347/SKBR3572
Figure Lengend Snippet: Klotho alleviated DQ-induced acute myocardial injury in rats through Nrf2/ARE activation. Rats were intragastrically administered with DQ to induce acute myocardial injury and treated with recombinant Klotho protein for 5 days. (A, B) Klotho protein expression in myocardial tissues was assessed using immunohistochemistry. (C) H&E staining of myocardial tissue of rats in each group (D, E) ROS fluorescence signal, (F) MDA level, (G) GSH-ST, (H) GSH-PX, and (I) SOD activities in H9c2 cells were assessed using ELISA kits. (J, K) Nrf2, HO-1, and NQO1 protein levels in myocardial tissues was assessed using immunohistochemistry. ** P <0.01, compared to control group. ## P <0.01, compared to DQ group.
Article Snippet: To induce oxidative injury, cells were treated with 50 μM DQ (45422, Sigma-Aldrich, USA) for 24 h. For Klotho intervention, cells were treated with 1 μg/mL
Techniques: Activation Assay, Recombinant, Expressing, Immunohistochemistry, Staining, Fluorescence, Enzyme-linked Immunosorbent Assay, Control
Journal: Frontiers in Immunology
Article Title: GM-CSF Inhibits c-Kit and SCF Expression by Bone Marrow-Derived Dendritic Cells
doi: 10.3389/fimmu.2017.00147
Figure Lengend Snippet: Granulocyte-macrophage colony-stimulating factor (GM-CSF) modulates c-kit and stem cell factor (SCF) expression by BM-derived DCs (BMdDCs) . (A–C) Effect of GM-CSF and cell density on c-kit expression by BMdDCs. BMdDCs were plated in 24-well plates and cultured for 2 days in complete Opti-MEM medium in four different conditions, that is at either 2 × 10 5 or 1.2 × 10 5 cell/well, and either with or without (w/o) GM-CSF at 20 ng/ml, as indicated. Cells were stained with fluorochrome-conjugated monoclonal antibodies (mAbs) and analyzed by flow cytometry. (A) Typical flow cytometric profiles, showing CD40 and MHCII expression by BMdDCs. Numbers represent percentages of cells in the indicated regions. (B) Typical histograms showing c-kit expression by MHCII int CD40 int and MHCII hi CD40 hi BMdDCs, gated as in (A) . Solid lines represent c-kit staining profiles, dashed lines represent isotype control mAb. Numbers indicate c-kit median fluorescence intensity (MFI) values. (C) Summary of c-kit expression results obtained from MHCII hi CD40 hi BMdDCs, gated as in (A) . c-kit MFI from individual samples and average values (bar). (D,E) Effect of GM-CSF on SCF expression by BMdDCs. (D) Cell lysates were prepared from day 0 BMdDCs and BMdDCs cultured for 2 days in 24-well plates at 1.2 × 10 5 cell/well in complete Opti-MEM medium with or w/o GM-CSF at 20 ng/ml, as indicated. SCF protein expression was analyzed by ELISA, testing 25 µg of cell lysate in 100 µl/well. Data are expressed as picograms per milliliter. Individual results from three experiments and average values (bar) are shown. (E) Day 0 and day 2 BMdDCs cultured in 24-well plates at 1.2 × 10 5 cell/well with or w/o GM-CSF at 20 ng/ml were analyzed by Real-Time PCR in triplicates. SCF mRNA expression was calculated relative to hprt1 in arbitrary units. For each experiment, day 2 c-kit/hprt1 levels were normalized with day 0. In (A,B) representative data of N = 4 experiments, in (C) N = 4 experiments, in (D) N = 3 experiments, in (E) mean ± SD of four experiments (* P ≤ 0.05; ** P ≤ 0.01).
Article Snippet: BMdDC culture supernatants (100 μl/well) and BMdDC lysates (25 μg of cell lysate/well) were tested by
Techniques: Expressing, Derivative Assay, Cell Culture, Staining, Bioprocessing, Flow Cytometry, Control, Fluorescence, Enzyme-linked Immunosorbent Assay, Real-time Polymerase Chain Reaction