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Image Search Results
Journal: Burns & Trauma
Article Title: Enhancing diabetic muscle repair through W-GA nanodots: a nanomedicinal approach to ameliorate myopathy in type 2 diabetes
doi: 10.1093/burnst/tkae059
Figure Lengend Snippet: Evaluation of the biocompatibility of W-GA in vitro. ( a ) C2C12 cells cultured for 7 days in W-GA were evaluated for proliferation and cytotoxicity using live/dead staining. Scale bar = 500 μm. ( b ) Survival rate of C212 cells ( n = 3) is shown as the mean ± standard deviation. The statistical significance of differences between treatments was determined by one-way ANOVA and the Bonferroni posthoc correction. NS: Not significant. ( c ) C2C12 cell proliferation capacity was assessed 24 hours post-treatment using BrdU incorporation. The green signal represents BrdU. Scale bar = 500 μm. ( d ) Quantification of BrdU assay data ( n = 3). The data are presented as the mean ± standard deviation. NS: Not significant. ( e ) The cell proliferation ability of C2C12 cells in the W-GA group was further evaluated using a CCK-8 assay. The data are presented as the mean ± standard deviation. NS: Not significant
Article Snippet:
Techniques: In Vitro, Cell Culture, Staining, Standard Deviation, BrdU Incorporation Assay, BrdU Staining, CCK-8 Assay
Journal: Burns & Trauma
Article Title: Enhancing diabetic muscle repair through W-GA nanodots: a nanomedicinal approach to ameliorate myopathy in type 2 diabetes
doi: 10.1093/burnst/tkae059
Figure Lengend Snippet: Antiapoptotic, antioxidative, and myogenic differentiation-promoting effects of W-GA. ( a ) Flow cytometry profiles showing the abundance of total C2C12 cells under various treatment conditions, along with apoptosis events in C2C12 cells under different therapeutic interventions. ( b ) Quantification of flow cytometry data for apoptotic cells ( n = 3). The data are presented as the mean ± standard deviation. NS: Not significant, * * p < 0.01. The statistical significance of differences between treatments was determined by one-way ANOVA and the Bonferroni posthoc correction. ( c ) Flow cytometry profiles showing the production of ROS in C2C12 cells under different treatment conditions. ( d ) Quantification of flow cytometry data for ROS production ( n = 3). The data are presented as the mean ± standard deviation. NS: Not significant, * p < 0.05. ( e ) Representative immunofluorescence image illustrating MYHC and MyoD protein expression in C2C12 myoblasts. Scale bar = 100 μm. ( f ) Quantitative analysis and intergroup comparison of myotube diameters ( n = 3). The statistical significance of differences between treatments was determined by one-way ANOVA and the Bonferroni posthoc correction. NS: Not significant, * p < 0.05, * * p < 0.01
Article Snippet:
Techniques: Flow Cytometry, Standard Deviation, Immunofluorescence, Expressing, Comparison
Journal: Journal of Biomedical Science
Article Title: Vitamin D3/VDR resists diet-induced obesity by modulating UCP3 expression in muscles
doi: 10.1186/s12929-016-0271-2
Figure Lengend Snippet: Calcitriol enhanced relative luciferase activity in a dose dependent manner. UCP3-pro-luc was transfected into C2C12 cells ( a ), L6 cells ( b ), and H-EMC-SS cells ( c ). Relative luciferase activity was analyzed by Dual Luciferase Assay after stimulation with calcitriol. n = 3, compared with vehicle, *: P < 0.05; **: P < 0.01
Article Snippet:
Techniques: Luciferase, Activity Assay, Transfection
Journal: Journal of Biomedical Science
Article Title: Vitamin D3/VDR resists diet-induced obesity by modulating UCP3 expression in muscles
doi: 10.1186/s12929-016-0271-2
Figure Lengend Snippet: Calcitriol increased UCP3 mRNA expression in muscle cells. Relative mRNA expression was detected in C2C12 cells ( a ), L6 cells ( b ), and H-EMC-SS cells ( c ) using qRT-PCR. To investigate the role of calcitriol and VDR on UCP3 mRNA expression, we transfected with a control plasmid ((-) mock) or VDR expression plasmid ((+) pCMX-VDR). We also performed loss-of-function experiments using selective siRNA against UCP3 ( a ). Compared with non-transfected controls, siRNAs against UCP3 strongly reduced the expression of the UCP3. n = 3. Compared with vehicle, *; P < 0.05, **; P < 0.01. ***; P < 0.005
Article Snippet:
Techniques: Expressing, Quantitative RT-PCR, Transfection, Control, Plasmid Preparation
Journal: Research
Article Title: Doping-Engineered Proangiogenic Nanozymes Orchestrate Ischemic Tissue Regeneration via Cytoprotection and Revascularization
doi: 10.34133/research.1260
Figure Lengend Snippet: Cu-doped Prussian blue (CuPB) nanozymes protect C2C12 myoblasts and H9c2 cardiomyocytes from H 2 O 2 -induced oxidative injury. (A and B) Representative fluorescence images and quantification of intracellular reactive oxygen species (ROS) in H 2 O 2 -injured C2C12 cells after Prussian blue (PB) or CuPB treatment, detected using the 2′,7′-dichlorodihydrofluorescein diacetate (DCFH-DA) probe. Scale bar: 50 μm. n = 5. (C and D) Representative terminal deoxynucleotidyl transferase-mediated dUTP nick end labeling (TUNEL) staining images and quantification of apoptotic C2C12 cells following H 2 O 2 injury with PB or CuPB treatment. Scale bar: 50 μm. n = 5. (E) Quantitative real-time polymerase chain reaction (qRT-PCR) analysis of apoptosis-related genes ( Bcl2 , Caspase3 , Caspase9 , and Bax ) in C2C12 cells after different treatments. n = 3. (F and G) Representative fluorescence images and quantification of intracellular ROS in H 2 O 2 -injured H9c2 cells after PB or CuPB treatment, detected using the DCFH-DA probe. Scale bar: 50 μm. n = 5. (H and I) Representative TUNEL staining images and quantification of apoptotic H9c2 cells following H 2 O 2 injury with PB or CuPB treatment. Scale bar: 50 μm. n = 5. (J) qRT-PCR analysis of apoptosis-related gene expression ( Bcl2 , Caspase3 , Caspase9 , and Bax ) in H9c2 cells after different treatments. n = 5.
Article Snippet: The rat cardiomyocyte cell line (H9c2) was obtained from Procell Life Science & Technology Co., Ltd. (China), and the
Techniques: Fluorescence, End Labeling, TUNEL Assay, Staining, Real-time Polymerase Chain Reaction, Quantitative RT-PCR, Gene Expression