visual field mapping stimuli Search Results


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GDF-5 treatment increased the protein expression levels of TNMD via phosphorylation of <t>p38</t> in MSCs from murine compact bone. (A) MSCs from murine compact bone were treated with 100 ng/ml GDF-5 for 0, 5, 10, 30 and 60 min, and 6 and 24 h. Phosphorylation of p38 was determined by western blotting. (B and C) MSCs from murine compact bone were pretreated with 10 µM <t>SB203580</t> (an inhibitor of p38) for 1 h, and subsequently treated with 100 ng/ml GDF-5 for 30 min. (B) Phosphorylation of p38 and (C) TNMD expression were determined by western blotting. MSCs, mesenchymal stem cells; GDF-5, growth differentiation factor-5; TNMD, tenomodulin; p-p38, phosphorylated-p38.
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GDF-5 treatment increased the protein expression levels of TNMD via phosphorylation of <t>p38</t> in MSCs from murine compact bone. (A) MSCs from murine compact bone were treated with 100 ng/ml GDF-5 for 0, 5, 10, 30 and 60 min, and 6 and 24 h. Phosphorylation of p38 was determined by western blotting. (B and C) MSCs from murine compact bone were pretreated with 10 µM <t>SB203580</t> (an inhibitor of p38) for 1 h, and subsequently treated with 100 ng/ml GDF-5 for 30 min. (B) Phosphorylation of p38 and (C) TNMD expression were determined by western blotting. MSCs, mesenchymal stem cells; GDF-5, growth differentiation factor-5; TNMD, tenomodulin; p-p38, phosphorylated-p38.
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GDF-5 treatment increased the protein expression levels of TNMD via phosphorylation of <t>p38</t> in MSCs from murine compact bone. (A) MSCs from murine compact bone were treated with 100 ng/ml GDF-5 for 0, 5, 10, 30 and 60 min, and 6 and 24 h. Phosphorylation of p38 was determined by western blotting. (B and C) MSCs from murine compact bone were pretreated with 10 µM <t>SB203580</t> (an inhibitor of p38) for 1 h, and subsequently treated with 100 ng/ml GDF-5 for 30 min. (B) Phosphorylation of p38 and (C) TNMD expression were determined by western blotting. MSCs, mesenchymal stem cells; GDF-5, growth differentiation factor-5; TNMD, tenomodulin; p-p38, phosphorylated-p38.
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GDF-5 treatment increased the protein expression levels of TNMD via phosphorylation of <t>p38</t> in MSCs from murine compact bone. (A) MSCs from murine compact bone were treated with 100 ng/ml GDF-5 for 0, 5, 10, 30 and 60 min, and 6 and 24 h. Phosphorylation of p38 was determined by western blotting. (B and C) MSCs from murine compact bone were pretreated with 10 µM <t>SB203580</t> (an inhibitor of p38) for 1 h, and subsequently treated with 100 ng/ml GDF-5 for 30 min. (B) Phosphorylation of p38 and (C) TNMD expression were determined by western blotting. MSCs, mesenchymal stem cells; GDF-5, growth differentiation factor-5; TNMD, tenomodulin; p-p38, phosphorylated-p38.
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GDF-5 treatment increased the protein expression levels of TNMD via phosphorylation of <t>p38</t> in MSCs from murine compact bone. (A) MSCs from murine compact bone were treated with 100 ng/ml GDF-5 for 0, 5, 10, 30 and 60 min, and 6 and 24 h. Phosphorylation of p38 was determined by western blotting. (B and C) MSCs from murine compact bone were pretreated with 10 µM <t>SB203580</t> (an inhibitor of p38) for 1 h, and subsequently treated with 100 ng/ml GDF-5 for 30 min. (B) Phosphorylation of p38 and (C) TNMD expression were determined by western blotting. MSCs, mesenchymal stem cells; GDF-5, growth differentiation factor-5; TNMD, tenomodulin; p-p38, phosphorylated-p38.
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GDF-5 treatment increased the protein expression levels of TNMD via phosphorylation of <t>p38</t> in MSCs from murine compact bone. (A) MSCs from murine compact bone were treated with 100 ng/ml GDF-5 for 0, 5, 10, 30 and 60 min, and 6 and 24 h. Phosphorylation of p38 was determined by western blotting. (B and C) MSCs from murine compact bone were pretreated with 10 µM <t>SB203580</t> (an inhibitor of p38) for 1 h, and subsequently treated with 100 ng/ml GDF-5 for 30 min. (B) Phosphorylation of p38 and (C) TNMD expression were determined by western blotting. MSCs, mesenchymal stem cells; GDF-5, growth differentiation factor-5; TNMD, tenomodulin; p-p38, phosphorylated-p38.
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GDF-5 treatment increased the protein expression levels of TNMD via phosphorylation of <t>p38</t> in MSCs from murine compact bone. (A) MSCs from murine compact bone were treated with 100 ng/ml GDF-5 for 0, 5, 10, 30 and 60 min, and 6 and 24 h. Phosphorylation of p38 was determined by western blotting. (B and C) MSCs from murine compact bone were pretreated with 10 µM <t>SB203580</t> (an inhibitor of p38) for 1 h, and subsequently treated with 100 ng/ml GDF-5 for 30 min. (B) Phosphorylation of p38 and (C) TNMD expression were determined by western blotting. MSCs, mesenchymal stem cells; GDF-5, growth differentiation factor-5; TNMD, tenomodulin; p-p38, phosphorylated-p38.
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GDF-5 treatment increased the protein expression levels of TNMD via phosphorylation of <t>p38</t> in MSCs from murine compact bone. (A) MSCs from murine compact bone were treated with 100 ng/ml GDF-5 for 0, 5, 10, 30 and 60 min, and 6 and 24 h. Phosphorylation of p38 was determined by western blotting. (B and C) MSCs from murine compact bone were pretreated with 10 µM <t>SB203580</t> (an inhibitor of p38) for 1 h, and subsequently treated with 100 ng/ml GDF-5 for 30 min. (B) Phosphorylation of p38 and (C) TNMD expression were determined by western blotting. MSCs, mesenchymal stem cells; GDF-5, growth differentiation factor-5; TNMD, tenomodulin; p-p38, phosphorylated-p38.
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Image Search Results


GDF-5 treatment increased the protein expression levels of TNMD via phosphorylation of p38 in MSCs from murine compact bone. (A) MSCs from murine compact bone were treated with 100 ng/ml GDF-5 for 0, 5, 10, 30 and 60 min, and 6 and 24 h. Phosphorylation of p38 was determined by western blotting. (B and C) MSCs from murine compact bone were pretreated with 10 µM SB203580 (an inhibitor of p38) for 1 h, and subsequently treated with 100 ng/ml GDF-5 for 30 min. (B) Phosphorylation of p38 and (C) TNMD expression were determined by western blotting. MSCs, mesenchymal stem cells; GDF-5, growth differentiation factor-5; TNMD, tenomodulin; p-p38, phosphorylated-p38.

Journal: Molecular Medicine Reports

Article Title: Growth differentiation factor-5 induces tenomodulin expression via phosphorylation of p38 and promotes viability of murine mesenchymal stem cells from compact bone

doi: 10.3892/mmr.2017.8325

Figure Lengend Snippet: GDF-5 treatment increased the protein expression levels of TNMD via phosphorylation of p38 in MSCs from murine compact bone. (A) MSCs from murine compact bone were treated with 100 ng/ml GDF-5 for 0, 5, 10, 30 and 60 min, and 6 and 24 h. Phosphorylation of p38 was determined by western blotting. (B and C) MSCs from murine compact bone were pretreated with 10 µM SB203580 (an inhibitor of p38) for 1 h, and subsequently treated with 100 ng/ml GDF-5 for 30 min. (B) Phosphorylation of p38 and (C) TNMD expression were determined by western blotting. MSCs, mesenchymal stem cells; GDF-5, growth differentiation factor-5; TNMD, tenomodulin; p-p38, phosphorylated-p38.

Article Snippet: Cells were synchronized and pre-stimulated with 10 μM SB203580 (Tocris Bioscience, Bristol, UK; an inhibitor of p38 MAPK) at 37°C for 1 h. The control group was treated with an equivalent volume of 0.1% dimethyl sulfoxide.

Techniques: Expressing, Phospho-proteomics, Western Blot