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pathogenic strain staphylococcus aureus atcc  (ATCC)


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    ATCC pathogenic strain staphylococcus aureus atcc
    Pathogenic Strain Staphylococcus Aureus Atcc, supplied by ATCC, used in various techniques. Bioz Stars score: 99/100, based on 34575 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
    https://www.bioz.com/product/pathogenic+strains/Staphylococcus+aureus+subsp%2E+aureus+Rosenbach/pm42250125-176-31-35
    Average 99 stars, based on 34575 article reviews
    pathogenic strain staphylococcus aureus atcc - by Bioz Stars, 2026-09
    99/100 stars

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    Cell Culture:

    Article Title: Functional Evaluation of Bacillus subtilis DCP04 from Korean Fermented Soybean Paste: A Potential Probiotic Strain for Polyethylene Degradation and Adsorption.
    Article Snippet: .. Pathogenic strains (S. aureus ATCC 25923, Escherichia coli ATCC 25922, P. aeruginosa ATCC 27853) were cultured to the same optical density under their optimal conditions [28]. ..

    Article Title: Synergistic stretching-annealing and salting-out enabling ultrastrong, ultratough anisotropic bacterial cellulose conductive hydrogels for bioelectric sensors.
    Article Snippet: Developing high-performance hydrogels that simultaneously exhibit biocompatibility, exceptional strength, toughness, conductivity, and antibacterial properties is crucial for meeting the stringent demands of bioelectric signal monitoring.. Herein, we present an integrated approach for designing anisotropic bacterial cellulose (BC) hydrogels (PBA/K-a%) involving stretching the as-prepared polyvinyl alcohol (PVA)-BC-2-acrylamido-2-methylpropanesulfonic acid (AMPS) hydrogels (PBA) to various elongation ratios (a%), followed by air-drying during annealing to align the polymer chains, and finally immersed in potassium citrate (K3Cit) solutions to enhance the polymeric interactions via a synergistic stretching-annealing and salting-out (SSAS) strategy.. This effective strategy improves molecular hydrogen and coordination interactions, enhances crystallinity, and induces the orientation of polymer chains and nanofibers along the stretching direction, significantly increasing the mechanical robustness of the hydrogels.

    Article Title: Functional Evaluation of Bacillus subtilis DCP04 from Korean Fermented Soybean Paste: A Potential Probiotic Strain for Polyethylene Degradation and Adsorption
    Article Snippet: .. Pathogenic strains ( S. aureus ATCC 25923, Escherichia coli ATCC 25922, P. aeruginosa ATCC 27853) were cultured to the same optical density under their optimal conditions [ ]. ..

    Concentration Assay:

    Article Title: Synergistic stretching-annealing and salting-out enabling ultrastrong, ultratough anisotropic bacterial cellulose conductive hydrogels for bioelectric sensors.
    Article Snippet: Developing high-performance hydrogels that simultaneously exhibit biocompatibility, exceptional strength, toughness, conductivity, and antibacterial properties is crucial for meeting the stringent demands of bioelectric signal monitoring.. Herein, we present an integrated approach for designing anisotropic bacterial cellulose (BC) hydrogels (PBA/K-a%) involving stretching the as-prepared polyvinyl alcohol (PVA)-BC-2-acrylamido-2-methylpropanesulfonic acid (AMPS) hydrogels (PBA) to various elongation ratios (a%), followed by air-drying during annealing to align the polymer chains, and finally immersed in potassium citrate (K3Cit) solutions to enhance the polymeric interactions via a synergistic stretching-annealing and salting-out (SSAS) strategy.. This effective strategy improves molecular hydrogen and coordination interactions, enhances crystallinity, and induces the orientation of polymer chains and nanofibers along the stretching direction, significantly increasing the mechanical robustness of the hydrogels.

    Selection:

    Article Title: Prebiotic potential of exopolysaccharide-derived oligosaccharides prepared using sandwich-integration bioprocess of acidolysis-electrodialysis and microbial fermentation
    Article Snippet: .. Single bacterial strains cultivation included a selection of probiotic ( L. plantarum CGMCC 1.19, E. faecalis CGMCC 1.6, L. lactis M1, P. pentosaceus CY-2f, L. casei PT16, and L. paracasei S1) and potentially pathogenic strains ( E. coli ATCC 25922, L. monocytogenes D08, S. typhimurium MS12, C. sakazakii M1, K. pneumoniae D07, and C. perfringens ZM22). ..

    other:

    Article Title: Prebiotic Potential of Pulp and By-products from Native Fruits of the Brazilian Savannah
    Article Snippet: Pathogenic strains, Escherichia coli (ATCC 25922 and ATCC 8739) were used as an enteric mixture inoculum (ratio 1:1).

    Activity Assay:

    Article Title: Design, synthesis and evaluation of lysine- and leucine-rich hydrocarbon-stapled peptides as antibacterial agents
    Article Snippet: To address the challenge of antimicrobial resistance, we investigated new antibacterial peptides based on lysineand leucine-rich sequences.. We stabilised their membrane-active secondary structures by applying hydrocarbon stapling at sequence positions i and i+4.. Stapling improved peptide structural stability in both aqueous and lipid environments, regardless of the staple position.



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    ATCC pathogenic reference strain e cloacae atcc 13047
    ( A ) Circular genome of Enterobacter cloacae BARC_01. ( B ) Number of positive hits against various antimicrobial resistance databases and major genes found in the genome of E. cloacae BARC_01. ( C ) Genome comparison (dot plot) of E. cloacae BARC_01 and E. cloacae <t>ATCC</t> <t>13047</t> (reference strain). ( D ) Circular plasmid of E. cloacae BARC_01.
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    Image Search Results


    ( A ) Circular genome of Enterobacter cloacae BARC_01. ( B ) Number of positive hits against various antimicrobial resistance databases and major genes found in the genome of E. cloacae BARC_01. ( C ) Genome comparison (dot plot) of E. cloacae BARC_01 and E. cloacae ATCC 13047 (reference strain). ( D ) Circular plasmid of E. cloacae BARC_01.

    Journal: Microbiology Resource Announcements

    Article Title: Complete genome sequence of marine Enterobacter cloacae BARC_01

    doi: 10.1128/mra.01417-25

    Figure Lengend Snippet: ( A ) Circular genome of Enterobacter cloacae BARC_01. ( B ) Number of positive hits against various antimicrobial resistance databases and major genes found in the genome of E. cloacae BARC_01. ( C ) Genome comparison (dot plot) of E. cloacae BARC_01 and E. cloacae ATCC 13047 (reference strain). ( D ) Circular plasmid of E. cloacae BARC_01.

    Article Snippet: This strain harbors an extensive repertoire of resistance determinants, closely resembling the pathogenic reference strain E. cloacae ATCC 13047.

    Techniques: Comparison, Plasmid Preparation