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ATCC control strain e coli atcc 25922
EC 50 results for Vibrio strains against GATR-3, LL-37-NH 2 , and Mastoparan-AF-NH 2 peptides. Vibrio vulnificus MO6 EC 50 results against A. GATR-3, B. LL-37-NH 2 , and C. Mastoparan-AF-NH 2 peptides. Vibrio vulnificus JY1701 EC 50 results against D. GATR-3, E. LL-37-NH 2 , and F. Mastoparan-AF-NH 2 peptides. Vibrio parahaemolyticus NY477 EC 50 results against G. GATR-3, H. LL-37-NH 2 , and I. Mastoparan-AF-NH 2 peptides. Vibrio parahaemolyticus SAK11 EC 50 results against J. GATR-3, K. LL-37-NH 2 , and L. Mastoparan-AF-NH 2 peptides. <t>Escherichia</t> <t>coli</t> EC 50 results against M. GATR-3, N. LL-37-NH 2 , and O. Mastoparan-AF-NH 2 peptides.
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ATCC e coli atcc 25922
Prevalence of <t>E.</t> <t>coli</t> and Staphylococcus spp. in feces in fruit bat species of Bangladesh ( n = 369). Numbers within the bars represent culture positive isolates of bacteria detected in the respective bat species.
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ATCC reference strain 20 e coli atcc 25922
Prevalence of <t>E.</t> <t>coli</t> and Staphylococcus spp. in feces in fruit bat species of Bangladesh ( n = 369). Numbers within the bars represent culture positive isolates of bacteria detected in the respective bat species.
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EC 50 results for Vibrio strains against GATR-3, LL-37-NH 2 , and Mastoparan-AF-NH 2 peptides. Vibrio vulnificus MO6 EC 50 results against A. GATR-3, B. LL-37-NH 2 , and C. Mastoparan-AF-NH 2 peptides. Vibrio vulnificus JY1701 EC 50 results against D. GATR-3, E. LL-37-NH 2 , and F. Mastoparan-AF-NH 2 peptides. Vibrio parahaemolyticus NY477 EC 50 results against G. GATR-3, H. LL-37-NH 2 , and I. Mastoparan-AF-NH 2 peptides. Vibrio parahaemolyticus SAK11 EC 50 results against J. GATR-3, K. LL-37-NH 2 , and L. Mastoparan-AF-NH 2 peptides. Escherichia coli EC 50 results against M. GATR-3, N. LL-37-NH 2 , and O. Mastoparan-AF-NH 2 peptides.

Journal: Comparative Immunology Reports

Article Title: The synthetic peptide GATR-3 shows significant antibacterial and biofilm-inhibition activity against shellfish- and oyster-associated bacteria Vibrio vulnificus and Vibrio parahaemolyticus

doi: 10.1016/j.cirep.2025.200266

Figure Lengend Snippet: EC 50 results for Vibrio strains against GATR-3, LL-37-NH 2 , and Mastoparan-AF-NH 2 peptides. Vibrio vulnificus MO6 EC 50 results against A. GATR-3, B. LL-37-NH 2 , and C. Mastoparan-AF-NH 2 peptides. Vibrio vulnificus JY1701 EC 50 results against D. GATR-3, E. LL-37-NH 2 , and F. Mastoparan-AF-NH 2 peptides. Vibrio parahaemolyticus NY477 EC 50 results against G. GATR-3, H. LL-37-NH 2 , and I. Mastoparan-AF-NH 2 peptides. Vibrio parahaemolyticus SAK11 EC 50 results against J. GATR-3, K. LL-37-NH 2 , and L. Mastoparan-AF-NH 2 peptides. Escherichia coli EC 50 results against M. GATR-3, N. LL-37-NH 2 , and O. Mastoparan-AF-NH 2 peptides.

Article Snippet: Against the control strain E. coli ATCC 25922, GATR-3 was extremely potent, with an EC50 of 4.44 × 10−5 μM (1.27 × 10−4 μg/mL), confirming its broad-spectrum and potent efficacy.

Techniques:

Biofilm Formation of Vibrio isolates and E. coli . Quantitative comparison of biofilm formation among Vibrio isolates and E. coli after 24 h incubation. Biofilm biomass was determined by crystal violet staining and measurement of OD₆₀₀. V. vulnificus MO6 and V. parahaemolyticus NY477 exhibited the highest biofilm-forming capacities.

Journal: Comparative Immunology Reports

Article Title: The synthetic peptide GATR-3 shows significant antibacterial and biofilm-inhibition activity against shellfish- and oyster-associated bacteria Vibrio vulnificus and Vibrio parahaemolyticus

doi: 10.1016/j.cirep.2025.200266

Figure Lengend Snippet: Biofilm Formation of Vibrio isolates and E. coli . Quantitative comparison of biofilm formation among Vibrio isolates and E. coli after 24 h incubation. Biofilm biomass was determined by crystal violet staining and measurement of OD₆₀₀. V. vulnificus MO6 and V. parahaemolyticus NY477 exhibited the highest biofilm-forming capacities.

Article Snippet: Against the control strain E. coli ATCC 25922, GATR-3 was extremely potent, with an EC50 of 4.44 × 10−5 μM (1.27 × 10−4 μg/mL), confirming its broad-spectrum and potent efficacy.

Techniques: Comparison, Incubation, Staining

Prevalence of E. coli and Staphylococcus spp. in feces in fruit bat species of Bangladesh ( n = 369). Numbers within the bars represent culture positive isolates of bacteria detected in the respective bat species.

Journal: One Health

Article Title: Prevalence and risk factors of antimicrobial resistance in Staphylococcus spp. and Escherichia coli in fruit bats at high-risk human-wildlife interfaces in Bangladesh

doi: 10.1016/j.onehlt.2025.101300

Figure Lengend Snippet: Prevalence of E. coli and Staphylococcus spp. in feces in fruit bat species of Bangladesh ( n = 369). Numbers within the bars represent culture positive isolates of bacteria detected in the respective bat species.

Article Snippet: The results of susceptibility testing were interpreted following the Clinical Laboratory and Standards Institute (CLSI) guideline and the manufacturer's (OXOID, UK) interpretation criteria using the E. coli ATCC 25922 and Staphylococcus aureus ATCC 25923 as a reference strain for quality control ([ ]; Oxoid [ ]) to interpret the zone of inhibition.

Techniques: Bacteria

AMR pattern of E. coli in bats. Note: AMX = Amoxicillin, AMP = Ampicillin, CFM = Cefixime, CFP=Cefepime, CTX = Cefotaxime, CRO=Ceftriaxone.

Journal: One Health

Article Title: Prevalence and risk factors of antimicrobial resistance in Staphylococcus spp. and Escherichia coli in fruit bats at high-risk human-wildlife interfaces in Bangladesh

doi: 10.1016/j.onehlt.2025.101300

Figure Lengend Snippet: AMR pattern of E. coli in bats. Note: AMX = Amoxicillin, AMP = Ampicillin, CFM = Cefixime, CFP=Cefepime, CTX = Cefotaxime, CRO=Ceftriaxone.

Article Snippet: The results of susceptibility testing were interpreted following the Clinical Laboratory and Standards Institute (CLSI) guideline and the manufacturer's (OXOID, UK) interpretation criteria using the E. coli ATCC 25922 and Staphylococcus aureus ATCC 25923 as a reference strain for quality control ([ ]; Oxoid [ ]) to interpret the zone of inhibition.

Techniques: