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e coli k12 atcc 10798  (ATCC)


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    Structured Review

    ATCC e coli k12 atcc 10798
    E Coli K12 Atcc 10798, supplied by ATCC, used in various techniques. Bioz Stars score: 99/100, based on 1579 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
    https://www.bioz.com/product/e+coli+k12+atcc+10798/Escherichia+coli+(Migula)+Castellani+and+Chalmers/10__1007_slash_s10989___026___10804___8-54-82-85
    Average 99 stars, based on 1579 article reviews
    e coli k12 atcc 10798 - by Bioz Stars, 2026-09
    99/100 stars

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    Related Articles

    Flow Cytometry:

    Article Title: Rapid detection of single viableEscherichia coliO157:H7 cells in milk by flow cytometry
    Article Snippet: Shanxi Key Laboratory of Environmental Veterinary Medicine, College of Animal Science and Veterinary Medicine, Shanxi Agricultural University, Taigu, Shanxi, China Center for Advanced Measurement Science, National Institute of Metrology, Beijing, China Department of Biometrology, Institute of Measurement and Testing Technology, Nanjing, Jiangsu, China Research Center for Ginseng Genetic Resources Development and Utilization, Jilin Agricultural University, Jilin, China

    Sequencing:

    Article Title: Cloning of the nptII gene of Escherichia coli and construction of a recombinant strain harboring functional recA and nptII antibiotic resistance.
    Article Snippet: .. Analysis of the nptII gene sequence The nptII sequence of Tn5 transposon of E. coli K12 ATCC 10798 (Figure 1) was analyzed in silico and found to have a molecular mass of 257.378 kDa. ..

    In Silico:

    Article Title: Cloning of the nptII gene of Escherichia coli and construction of a recombinant strain harboring functional recA and nptII antibiotic resistance.
    Article Snippet: .. Analysis of the nptII gene sequence The nptII sequence of Tn5 transposon of E. coli K12 ATCC 10798 (Figure 1) was analyzed in silico and found to have a molecular mass of 257.378 kDa. ..

    Sterility:

    Article Title: Ironing out the wrinkles in the rare biosphere through improved OTU clustering
    Article Snippet: .. We inoculated 5 ml of filter-sterilized nutrient broth with a single colony of E. coli K12 ATCC 10798 or S. epidermidis ATCC 14990, and grew these cultures overnight at 37°C to an OD 600 of ∼1 [nutrient broth is 8 g Difco nutrient broth powder (Invitrogen) in Milli-Q+ ultrapure water (Millipore) to 1 l; all loops, pipets, flasks, etc. were disposable sterile polycarbonate or polypropylene]. ..

    Control:

    Article Title: Safety assessment of Gram-negative bacteria associated with traditional French cheeses.
    Article Snippet: .. Control 355 strains, E. coli Nissle 1917, E. coli K12 ATCC 10798, and Lactobacillus rhamnosus GG had 356 LD 50 from around 107 to >108, respectively. ..

    Concentration Assay:

    Article Title: Assessing the Effect of Substitution of Arginine with Homoarginine in Two Antimicrobial Peptides
    Article Snippet: .. Table 1 Minimum inhibitory concentrations of the AMPs Bacterial strains Minimum inhibitory concentration of the AMPs (μM) Mel4 Mel4HArg PLR10 PLHR10 S. aureus ATCC 6538 31.25 > 250 31.25 31.25 S. aureus 38 62.5 ND 31.25 31.25 P. aeruginosa ATCC 19660 500 > 250 125 250 P. aeruginosa 123 > 500 ND 250 250 P. aeruginosa 216 > 500 ND 125 250 E. coli ATCC 10798 125 250 62.5 125 ND Not determined Fig. 1 Antimicrobial activity of peptides against S. aureus, E. coli K12 ATCC 10798 and P. aeruginosa represented as the percentage log reduction of the concentration of peptides tested. .. Inhibition of cell growth was measured as a percentage reduction in optical density (OD620nm) between control and treated bacteria (a) Mel4 activity against standard strains and clinical isolates; active against all strains but less so in P. aeruginosa 123 and 216 (b) Mel4HArg was tested only on standard strains with the lowest activity profile; showing the least activity against S. aureus ATCC 6538(c) Activity of PLR10 against strains tested.

    Activity Assay:

    Article Title: Assessing the Effect of Substitution of Arginine with Homoarginine in Two Antimicrobial Peptides
    Article Snippet: .. Table 1 Minimum inhibitory concentrations of the AMPs Bacterial strains Minimum inhibitory concentration of the AMPs (μM) Mel4 Mel4HArg PLR10 PLHR10 S. aureus ATCC 6538 31.25 > 250 31.25 31.25 S. aureus 38 62.5 ND 31.25 31.25 P. aeruginosa ATCC 19660 500 > 250 125 250 P. aeruginosa 123 > 500 ND 250 250 P. aeruginosa 216 > 500 ND 125 250 E. coli ATCC 10798 125 250 62.5 125 ND Not determined Fig. 1 Antimicrobial activity of peptides against S. aureus, E. coli K12 ATCC 10798 and P. aeruginosa represented as the percentage log reduction of the concentration of peptides tested. .. Inhibition of cell growth was measured as a percentage reduction in optical density (OD620nm) between control and treated bacteria (a) Mel4 activity against standard strains and clinical isolates; active against all strains but less so in P. aeruginosa 123 and 216 (b) Mel4HArg was tested only on standard strains with the lowest activity profile; showing the least activity against S. aureus ATCC 6538(c) Activity of PLR10 against strains tested.



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    Figure 6. Antibacterial activity of HA discs physically coated with the polymer. (a) Antibacterial activity on coated disc surfaces, (b) activity in the surrounding media. Scanning electron micrographs of <t>E.</t> <t>coli</t> growing on (c) untreated HA disc, (d) HA 500p, and (e) HA 1000p. ns = no significance, *** = p < 0.001; **** = p < 0.0001.
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    Figure 6. Antibacterial activity of HA discs physically coated with the polymer. (a) Antibacterial activity on coated disc surfaces, (b) activity in the surrounding media. Scanning electron micrographs of <t>E.</t> <t>coli</t> growing on (c) untreated HA disc, (d) HA 500p, and (e) HA 1000p. ns = no significance, *** = p < 0.001; **** = p < 0.0001.
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    Image Search Results


    Figure 6. Antibacterial activity of HA discs physically coated with the polymer. (a) Antibacterial activity on coated disc surfaces, (b) activity in the surrounding media. Scanning electron micrographs of E. coli growing on (c) untreated HA disc, (d) HA 500p, and (e) HA 1000p. ns = no significance, *** = p < 0.001; **** = p < 0.0001.

    Journal: Materials (Basel, Switzerland)

    Article Title: Electrostatic and Covalent Binding of an Antibacterial Polymer to Hydroxyapatite for Protection against Escherichia coli Colonization.

    doi: 10.3390/ma16145045

    Figure Lengend Snippet: Figure 6. Antibacterial activity of HA discs physically coated with the polymer. (a) Antibacterial activity on coated disc surfaces, (b) activity in the surrounding media. Scanning electron micrographs of E. coli growing on (c) untreated HA disc, (d) HA 500p, and (e) HA 1000p. ns = no significance, *** = p < 0.001; **** = p < 0.0001.

    Article Snippet: E. coli K12 strain (ATCC 10798; isolated from feces of a diphtheria convalescent) was used to assess the antibacterial performance of the surfaces described in this study.

    Techniques: Activity Assay, Polymer

    Figure 7. Antibacterial activity of glass coverslips covalently coated with the polymer. (a) Antibac- terial activity on coated glass surface and (b) activity in the surrounding media. Scanning electron micrographs of E. coli growing on (c) untreated glass coverslip, (d) PIIID-glass coverslip 500p, and (e) PIIID-glass coverslip 1000p. ** = p < 0.01; *** = p < 0.001; **** = p < 0.0001.

    Journal: Materials (Basel, Switzerland)

    Article Title: Electrostatic and Covalent Binding of an Antibacterial Polymer to Hydroxyapatite for Protection against Escherichia coli Colonization.

    doi: 10.3390/ma16145045

    Figure Lengend Snippet: Figure 7. Antibacterial activity of glass coverslips covalently coated with the polymer. (a) Antibac- terial activity on coated glass surface and (b) activity in the surrounding media. Scanning electron micrographs of E. coli growing on (c) untreated glass coverslip, (d) PIIID-glass coverslip 500p, and (e) PIIID-glass coverslip 1000p. ** = p < 0.01; *** = p < 0.001; **** = p < 0.0001.

    Article Snippet: E. coli K12 strain (ATCC 10798; isolated from feces of a diphtheria convalescent) was used to assess the antibacterial performance of the surfaces described in this study.

    Techniques: Activity Assay, Polymer

    Figure 8. Diminished and magnified images of E. coli growing on PIIID-glass surfaces: (a,c) PIIID- glass coverslip, and (b,d) PIIID-glass coverslip 1000p.

    Journal: Materials (Basel, Switzerland)

    Article Title: Electrostatic and Covalent Binding of an Antibacterial Polymer to Hydroxyapatite for Protection against Escherichia coli Colonization.

    doi: 10.3390/ma16145045

    Figure Lengend Snippet: Figure 8. Diminished and magnified images of E. coli growing on PIIID-glass surfaces: (a,c) PIIID- glass coverslip, and (b,d) PIIID-glass coverslip 1000p.

    Article Snippet: E. coli K12 strain (ATCC 10798; isolated from feces of a diphtheria convalescent) was used to assess the antibacterial performance of the surfaces described in this study.

    Techniques:

    Figure 9. Antibacterial activity of glass coverslips covalently coated with the polymer. (a) Antibac- terial activity on coated disc surface and (b) activity in the surrounding media. Scanning electron micrographs of E. coli growing on (c) PIIID-HA disc, (d) PIIID-HA 500p, and (e) PIIID-HA 1000p. **** = p < 0.0001.

    Journal: Materials (Basel, Switzerland)

    Article Title: Electrostatic and Covalent Binding of an Antibacterial Polymer to Hydroxyapatite for Protection against Escherichia coli Colonization.

    doi: 10.3390/ma16145045

    Figure Lengend Snippet: Figure 9. Antibacterial activity of glass coverslips covalently coated with the polymer. (a) Antibac- terial activity on coated disc surface and (b) activity in the surrounding media. Scanning electron micrographs of E. coli growing on (c) PIIID-HA disc, (d) PIIID-HA 500p, and (e) PIIID-HA 1000p. **** = p < 0.0001.

    Article Snippet: E. coli K12 strain (ATCC 10798; isolated from feces of a diphtheria convalescent) was used to assess the antibacterial performance of the surfaces described in this study.

    Techniques: Activity Assay, Polymer