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laser-scanning densitometry gelpro analyzer software  (GraphPad Software Inc)


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    Structured Review

    GraphPad Software Inc laser-scanning densitometry gelpro analyzer software
    Laser Scanning Densitometry Gelpro Analyzer Software, supplied by GraphPad Software Inc, used in various techniques. Bioz Stars score: 90/100, based on 1 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
    https://www.bioz.com/product/densitometry+scanning+laser/gelpro+analyzer+software/pm40411699-79-4-9
    Average 90 stars, based on 1 article reviews
    laser-scanning densitometry gelpro analyzer software - by Bioz Stars, 2026-09
    90/100 stars

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    Related Articles

    Software:

    Article Title: Adverse effects polystyrene microplastics exert on zebrafish heart - Molecular to individual level.
    Article Snippet: In the present study the effects of sublethal concentrations of polystyrene microplastics (PS-MPs) on zebrafish were evaluated at multiple levels, related to fish activity and oxidative stress, metabolic changes and contraction parameters in the heart tissue.. Zebrafish were fed for 21 days food enriched with PS-MPs (particle sizes 3–12 μm) and a battery of stress indices like DNA damage, lipid peroxidation, autophagy, ubiquitin levels, caspases activation, metabolite adjustments, frequency and force of ventricular contraction were measured in fish heart, parallel to fish swimming velocity.. In particular, exposure to PS-MPs caused significant decrease in heart function and swimming competence, while enhanced levels of oxidative stress indices and metabolic adjustments were observed in the heart of challenged species.

    Article Title: Toxicity and Functional Tissue Responses of Two Freshwater Fish after Exposure to Polystyrene Microplastics
    Article Snippet: Then, an 1 h incubation with a horseradish peroxidase linked secondary antibody (7074, 7076, Cell Signaling, Beverly, MA, USA) followed and membranes were washed with TBST (3 × 5 min). .. The blots were detected using enhanced chemiluminescence (Chemicon) on Fuji Medical X-ray film and quantified by densitometry scanning laser (GelPro Analyzer Software, GraphPad, San Diego, CA, USA). ..

    other:

    Article Title: Differentiation in the expression of toxic effects of polyethylene-microplastics on two freshwater fish species: Size matters.
    Article Snippet: • Small sized PS-MPs are more potent toxics than large ones in zebrafish and perch.. • Small PE-MPs induced more intense oxidative stress and apoptosis in liver and gills.. • Larger PE-MPs tended to accumulate more in gills.



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    GraphPad Software Inc laser scanning densitometry
    HSP70 (a) and HSP90 (b) in the heart (A), muscle (B), and digestive tract (C) of gilthead sea bream ( S. aurata ) and European sea bass ( D. labrax ) under the 0% (TM0), 25% (TM25), and 50% (TM50) T. molitor inclusion diet treatment. Representative immunoblots are shown and were quantified by laser scanning <t>densitometry</t> and plotted. Values represent means ± SD; n = 5 preparations from different animals. ∗ indicates p < 0.05 compared with 0%, # indicates p < 0.05 compared with 25%, and + indicates p < 0.05 between species at the same TM diet.
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    Image Search Results


    HSP70 (a) and HSP90 (b) in the heart (A), muscle (B), and digestive tract (C) of gilthead sea bream ( S. aurata ) and European sea bass ( D. labrax ) under the 0% (TM0), 25% (TM25), and 50% (TM50) T. molitor inclusion diet treatment. Representative immunoblots are shown and were quantified by laser scanning densitometry and plotted. Values represent means ± SD; n = 5 preparations from different animals. ∗ indicates p < 0.05 compared with 0%, # indicates p < 0.05 compared with 25%, and + indicates p < 0.05 between species at the same TM diet.

    Journal: Aquaculture Nutrition

    Article Title: Dietary Tenebrio molitor Larvae Meal Inclusion Exerts Tissue-Specific Effects on Cellular, Metabolic, and Antioxidant Status in European Sea Bass ( Dicentrarchus labrax ) and Gilthead Seabream ( Sparus aurata )

    doi: 10.1155/2022/9858983

    Figure Lengend Snippet: HSP70 (a) and HSP90 (b) in the heart (A), muscle (B), and digestive tract (C) of gilthead sea bream ( S. aurata ) and European sea bass ( D. labrax ) under the 0% (TM0), 25% (TM25), and 50% (TM50) T. molitor inclusion diet treatment. Representative immunoblots are shown and were quantified by laser scanning densitometry and plotted. Values represent means ± SD; n = 5 preparations from different animals. ∗ indicates p < 0.05 compared with 0%, # indicates p < 0.05 compared with 25%, and + indicates p < 0.05 between species at the same TM diet.

    Article Snippet: Bands and blots were detected by enhanced chemiluminescence, while quantification was applied through laser scanning densitometry (GelPro Analyzer Software, GraphPad).

    Techniques: Western Blot

    Phosphorylation of p38 MAPK (a), p44/42 MAPK (b), and JNKs (c) in the heart (A), muscle (B), and digestive tract (C) of gilthead sea bream ( S. aurata ) and European sea bass ( D. labrax ) under the 0% (TM0), 25% (TM25), and 50% (TM50) T. molitor inclusion diet treatment. Representative immunoblots are shown and were quantified by laser scanning densitometry and plotted. Values represent means ± SD; n = 5 preparations from different animals. ∗ indicates p < 0.05 compared with 0%, # indicates p < 0.05 compared with 25%, and + indicates p < 0.05 between species at the same TM diet.

    Journal: Aquaculture Nutrition

    Article Title: Dietary Tenebrio molitor Larvae Meal Inclusion Exerts Tissue-Specific Effects on Cellular, Metabolic, and Antioxidant Status in European Sea Bass ( Dicentrarchus labrax ) and Gilthead Seabream ( Sparus aurata )

    doi: 10.1155/2022/9858983

    Figure Lengend Snippet: Phosphorylation of p38 MAPK (a), p44/42 MAPK (b), and JNKs (c) in the heart (A), muscle (B), and digestive tract (C) of gilthead sea bream ( S. aurata ) and European sea bass ( D. labrax ) under the 0% (TM0), 25% (TM25), and 50% (TM50) T. molitor inclusion diet treatment. Representative immunoblots are shown and were quantified by laser scanning densitometry and plotted. Values represent means ± SD; n = 5 preparations from different animals. ∗ indicates p < 0.05 compared with 0%, # indicates p < 0.05 compared with 25%, and + indicates p < 0.05 between species at the same TM diet.

    Article Snippet: Bands and blots were detected by enhanced chemiluminescence, while quantification was applied through laser scanning densitometry (GelPro Analyzer Software, GraphPad).

    Techniques: Phospho-proteomics, Western Blot

    Bax/Bcl-2 ratio (a) and caspase conjugates (b) in the heart (A), muscle (B), and digestive tract (C) of gilthead sea bream ( S. aurata ) and European sea bass ( D. labrax ) under the 0% (TM0), 25% (TM25), and 50% (TM50) T. molitor inclusion diet treatment. Representative immunoblots are shown and were quantified by laser scanning densitometry and plotted. Values represent means ± SD; n = 5 preparations from different animals. ∗ indicates p < 0.05 compared with 0%, # indicates p < 0.05 compared with 25%, and + indicates p < 0.05 between species at the same TM diet.

    Journal: Aquaculture Nutrition

    Article Title: Dietary Tenebrio molitor Larvae Meal Inclusion Exerts Tissue-Specific Effects on Cellular, Metabolic, and Antioxidant Status in European Sea Bass ( Dicentrarchus labrax ) and Gilthead Seabream ( Sparus aurata )

    doi: 10.1155/2022/9858983

    Figure Lengend Snippet: Bax/Bcl-2 ratio (a) and caspase conjugates (b) in the heart (A), muscle (B), and digestive tract (C) of gilthead sea bream ( S. aurata ) and European sea bass ( D. labrax ) under the 0% (TM0), 25% (TM25), and 50% (TM50) T. molitor inclusion diet treatment. Representative immunoblots are shown and were quantified by laser scanning densitometry and plotted. Values represent means ± SD; n = 5 preparations from different animals. ∗ indicates p < 0.05 compared with 0%, # indicates p < 0.05 compared with 25%, and + indicates p < 0.05 between species at the same TM diet.

    Article Snippet: Bands and blots were detected by enhanced chemiluminescence, while quantification was applied through laser scanning densitometry (GelPro Analyzer Software, GraphPad).

    Techniques: Western Blot

    Ubiquitin conjugates in the heart (a), muscle (b), and digestive tract (c) of gilthead sea bream ( S. aurata ) and European sea bass ( D. labrax ) under the 0% (TM0), 25% (TM25), and 50% (TM50) T. molitor inclusion diet treatment. Representative immunoblots are shown and were quantified by laser scanning densitometry and plotted. Values represent means ± SD; n = 5 preparations from different animals. ∗ indicates p < 0.05 compared with 0%, # indicates p < 0.05 compared with 25%, and + indicates p < 0.05 between species at the same TM diet.

    Journal: Aquaculture Nutrition

    Article Title: Dietary Tenebrio molitor Larvae Meal Inclusion Exerts Tissue-Specific Effects on Cellular, Metabolic, and Antioxidant Status in European Sea Bass ( Dicentrarchus labrax ) and Gilthead Seabream ( Sparus aurata )

    doi: 10.1155/2022/9858983

    Figure Lengend Snippet: Ubiquitin conjugates in the heart (a), muscle (b), and digestive tract (c) of gilthead sea bream ( S. aurata ) and European sea bass ( D. labrax ) under the 0% (TM0), 25% (TM25), and 50% (TM50) T. molitor inclusion diet treatment. Representative immunoblots are shown and were quantified by laser scanning densitometry and plotted. Values represent means ± SD; n = 5 preparations from different animals. ∗ indicates p < 0.05 compared with 0%, # indicates p < 0.05 compared with 25%, and + indicates p < 0.05 between species at the same TM diet.

    Article Snippet: Bands and blots were detected by enhanced chemiluminescence, while quantification was applied through laser scanning densitometry (GelPro Analyzer Software, GraphPad).

    Techniques: Ubiquitin Proteomics, Western Blot

    LC3BII/LC3BI ratio (a) and SQSTM1/p62 (b) in the heart (A), muscle (B), and digestive tract (C) of gilthead sea bream ( S. aurata ) and European sea bass ( D. labrax ) under the 0% (TM0), 25% (TM25), and 50% (TM50) T. molitor inclusion diet treatment. Representative immunoblots are shown and were quantified by laser scanning densitometry and plotted. Values represent means ± SD; n = 5 preparations from different animals. ∗ indicates p < 0.05 compared with 0%, # indicates p < 0.05 compared with 25%, and + indicates p < 0.05 between species at the same TM diet.

    Journal: Aquaculture Nutrition

    Article Title: Dietary Tenebrio molitor Larvae Meal Inclusion Exerts Tissue-Specific Effects on Cellular, Metabolic, and Antioxidant Status in European Sea Bass ( Dicentrarchus labrax ) and Gilthead Seabream ( Sparus aurata )

    doi: 10.1155/2022/9858983

    Figure Lengend Snippet: LC3BII/LC3BI ratio (a) and SQSTM1/p62 (b) in the heart (A), muscle (B), and digestive tract (C) of gilthead sea bream ( S. aurata ) and European sea bass ( D. labrax ) under the 0% (TM0), 25% (TM25), and 50% (TM50) T. molitor inclusion diet treatment. Representative immunoblots are shown and were quantified by laser scanning densitometry and plotted. Values represent means ± SD; n = 5 preparations from different animals. ∗ indicates p < 0.05 compared with 0%, # indicates p < 0.05 compared with 25%, and + indicates p < 0.05 between species at the same TM diet.

    Article Snippet: Bands and blots were detected by enhanced chemiluminescence, while quantification was applied through laser scanning densitometry (GelPro Analyzer Software, GraphPad).

    Techniques: Western Blot