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anti-green fluorescent protein (gfp) antibody  (Antibodies Inc)


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    Structured Review

    Antibodies Inc anti-green fluorescent protein (gfp) antibody
    Anti Green Fluorescent Protein (Gfp) Antibody, supplied by Antibodies Inc, used in various techniques. Bioz Stars score: 99/100, based on 4244 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
    https://www.bioz.com/product/gfp/Anti-Green+Fluorescent+Protein+(GFP)+Antibody/custom%40gfp-1010%4042240014
    Average 99 stars, based on 4244 article reviews
    anti-green fluorescent protein (gfp) antibody - by Bioz Stars, 2026-09
    99/100 stars

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    Related Articles

    Recombinant:

    Article Title: Zebrafish knock-in lines enabling live visualization of extracellular matrix dynamics during development and regeneration
    Article Snippet: 5 minutes in PBST, then treated with Vectashield mounting medium (H-1900, Vector) and DAPI (1:1000, D3571, Thermo fisher). Primary antibodies used in this study were: anti-GFP (1:1000, SKU: GFP-1020, Antibodies inc), anti-RFP (1:500, 5f8, Proteintech), anti-Fibronectin (1:300, F3648, Millipore Sigma), anti-GFAP (Glial Fibrillary Acidic Protein) (1:500, G3893, Millipore Sigma). Secondary antibodies

    Staining:

    Article Title: Zebrafish knock-in lines enabling live visualization of extracellular matrix dynamics during development and regeneration
    Article Snippet: 5 minutes in PBST, then treated with Vectashield mounting medium (H-1900, Vector) and DAPI (1:1000, D3571, Thermo fisher). Primary antibodies used in this study were: anti-GFP (1:1000, SKU: GFP-1020, Antibodies inc), anti-RFP (1:500, 5f8, Proteintech), anti-Fibronectin (1:300, F3648, Millipore Sigma), anti-GFAP (Glial Fibrillary Acidic Protein) (1:500, G3893, Millipore Sigma). Secondary antibodies

    Plasmid Preparation:

    Article Title: Zebrafish knock-in lines enabling live visualization of extracellular matrix dynamics during development and regeneration
    Article Snippet: 5 minutes in PBST, then treated with Vectashield mounting medium (H-1900, Vector) and DAPI (1:1000, D3571, Thermo fisher). Primary antibodies used in this study were: anti-GFP (1:1000, SKU: GFP-1020, Antibodies inc), anti-RFP (1:500, 5f8, Proteintech), anti-Fibronectin (1:300, F3648, Millipore Sigma), anti-GFAP (Glial Fibrillary Acidic Protein) (1:500, G3893, Millipore Sigma). Secondary antibodies

    Immunocytochemistry:

    Article Title: Zebrafish knock-in lines enabling live visualization of extracellular matrix dynamics during development and regeneration
    Article Snippet: 5 minutes in PBST, then treated with Vectashield mounting medium (H-1900, Vector) and DAPI (1:1000, D3571, Thermo fisher). Primary antibodies used in this study were: anti-GFP (1:1000, SKU: GFP-1020, Antibodies inc), anti-RFP (1:500, 5f8, Proteintech), anti-Fibronectin (1:300, F3648, Millipore Sigma), anti-GFAP (Glial Fibrillary Acidic Protein) (1:500, G3893, Millipore Sigma). Secondary antibodies

    Imaging:

    Article Title: Zebrafish knock-in lines enabling live visualization of extracellular matrix dynamics during development and regeneration
    Article Snippet: 5 minutes in PBST, then treated with Vectashield mounting medium (H-1900, Vector) and DAPI (1:1000, D3571, Thermo fisher). Primary antibodies used in this study were: anti-GFP (1:1000, SKU: GFP-1020, Antibodies inc), anti-RFP (1:500, 5f8, Proteintech), anti-Fibronectin (1:300, F3648, Millipore Sigma), anti-GFAP (Glial Fibrillary Acidic Protein) (1:500, G3893, Millipore Sigma). Secondary antibodies

    Immunostaining:

    Article Title: Zebrafish knock-in lines enabling live visualization of extracellular matrix dynamics during development and regeneration
    Article Snippet: 5 minutes in PBST, then treated with Vectashield mounting medium (H-1900, Vector) and DAPI (1:1000, D3571, Thermo fisher). Primary antibodies used in this study were: anti-GFP (1:1000, SKU: GFP-1020, Antibodies inc), anti-RFP (1:500, 5f8, Proteintech), anti-Fibronectin (1:300, F3648, Millipore Sigma), anti-GFAP (Glial Fibrillary Acidic Protein) (1:500, G3893, Millipore Sigma). Secondary antibodies

    Next-Generation Sequencing:

    Article Title: Zebrafish knock-in lines enabling live visualization of extracellular matrix dynamics during development and regeneration
    Article Snippet: 5 minutes in PBST, then treated with Vectashield mounting medium (H-1900, Vector) and DAPI (1:1000, D3571, Thermo fisher). Primary antibodies used in this study were: anti-GFP (1:1000, SKU: GFP-1020, Antibodies inc), anti-RFP (1:500, 5f8, Proteintech), anti-Fibronectin (1:300, F3648, Millipore Sigma), anti-GFAP (Glial Fibrillary Acidic Protein) (1:500, G3893, Millipore Sigma). Secondary antibodies

    Incubation:

    Article Title: Zebrafish knock-in lines enabling live visualization of extracellular matrix dynamics during development and regeneration
    Article Snippet: 5 minutes in PBST, then treated with Vectashield mounting medium (H-1900, Vector) and DAPI (1:1000, D3571, Thermo fisher). Primary antibodies used in this study were: anti-GFP (1:1000, SKU: GFP-1020, Antibodies inc), anti-RFP (1:500, 5f8, Proteintech), anti-Fibronectin (1:300, F3648, Millipore Sigma), anti-GFAP (Glial Fibrillary Acidic Protein) (1:500, G3893, Millipore Sigma). Secondary antibodies

    Blocking Assay:

    Article Title: Zebrafish knock-in lines enabling live visualization of extracellular matrix dynamics during development and regeneration
    Article Snippet: 5 minutes in PBST, then treated with Vectashield mounting medium (H-1900, Vector) and DAPI (1:1000, D3571, Thermo fisher). Primary antibodies used in this study were: anti-GFP (1:1000, SKU: GFP-1020, Antibodies inc), anti-RFP (1:500, 5f8, Proteintech), anti-Fibronectin (1:300, F3648, Millipore Sigma), anti-GFAP (Glial Fibrillary Acidic Protein) (1:500, G3893, Millipore Sigma). Secondary antibodies

    Labeling:

    Article Title: Zebrafish knock-in lines enabling live visualization of extracellular matrix dynamics during development and regeneration
    Article Snippet: 5 minutes in PBST, then treated with Vectashield mounting medium (H-1900, Vector) and DAPI (1:1000, D3571, Thermo fisher). Primary antibodies used in this study were: anti-GFP (1:1000, SKU: GFP-1020, Antibodies inc), anti-RFP (1:500, 5f8, Proteintech), anti-Fibronectin (1:300, F3648, Millipore Sigma), anti-GFAP (Glial Fibrillary Acidic Protein) (1:500, G3893, Millipore Sigma). Secondary antibodies

    Immunohistochemistry:

    Article Title: Zebrafish knock-in lines enabling live visualization of extracellular matrix dynamics during development and regeneration
    Article Snippet: 5 minutes in PBST, then treated with Vectashield mounting medium (H-1900, Vector) and DAPI (1:1000, D3571, Thermo fisher). Primary antibodies used in this study were: anti-GFP (1:1000, SKU: GFP-1020, Antibodies inc), anti-RFP (1:500, 5f8, Proteintech), anti-Fibronectin (1:300, F3648, Millipore Sigma), anti-GFAP (Glial Fibrillary Acidic Protein) (1:500, G3893, Millipore Sigma). Secondary antibodies



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    Image Search Results


    Antimicrobial activity of multi-mode periosteum scaffolds with different NIR irradiation strategies. A. Representative images of MRSA and E. coli colonies with different treatments. Quantitative analysis of MRSA ( B ) and E. coli ( C ) colonies in (A), respectively (n = 3). Results are presented as means ± SD. Samples were subjected to one-way ANOVA with Tukey's post hoc test. Ns ( p > 0.05), ∗∗ p < 0.01. D. Representative SEM images of MRSA and E. coli colonies with different treatments. Scale bar: 1 μm. E. Live/dead staining of MRSA and E. coli colonies in different treatment groups. Scale bar: 100 μm. F. Confocal microscopy image of MRSA biofilm. Scale bar: 100 μm. Protein leakage statistics for MRSA ( G ) and E. coli ( H ), respectively (n = 3). Results are presented as means ± SD. Samples were subjected to one-way ANOVA with Tukey's post hoc test. ∗∗ Significant differences of group M + CI vs. NC, M, and M + II, p < 0.01.

    Journal: Bioactive Materials

    Article Title: A near-infrared regulated programmable multi-mode periosteum scaffold for sequential healing of infected bone defects

    doi: 10.1016/j.bioactmat.2026.03.046

    Figure Lengend Snippet: Antimicrobial activity of multi-mode periosteum scaffolds with different NIR irradiation strategies. A. Representative images of MRSA and E. coli colonies with different treatments. Quantitative analysis of MRSA ( B ) and E. coli ( C ) colonies in (A), respectively (n = 3). Results are presented as means ± SD. Samples were subjected to one-way ANOVA with Tukey's post hoc test. Ns ( p > 0.05), ∗∗ p < 0.01. D. Representative SEM images of MRSA and E. coli colonies with different treatments. Scale bar: 1 μm. E. Live/dead staining of MRSA and E. coli colonies in different treatment groups. Scale bar: 100 μm. F. Confocal microscopy image of MRSA biofilm. Scale bar: 100 μm. Protein leakage statistics for MRSA ( G ) and E. coli ( H ), respectively (n = 3). Results are presented as means ± SD. Samples were subjected to one-way ANOVA with Tukey's post hoc test. ∗∗ Significant differences of group M + CI vs. NC, M, and M + II, p < 0.01.

    Article Snippet: Methicillin-resistant Staphylococcus aureus (MRSA, ATCC 43300) and Escherichia coli (ATCC 25922) were purchased from the American Type Culture Collection (ATCC).

    Techniques: Activity Assay, Irradiation, Staining, Confocal Microscopy