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escherichia coli strains hb101  (ATCC)


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    Structured Review

    ATCC escherichia coli strains hb101
    Escherichia Coli Strains Hb101, supplied by ATCC, used in various techniques. Bioz Stars score: 93/100, based on 375 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
    https://www.bioz.com/product/escherichia+coli+strains/34-7-23S/pm42288724-67-0-4
    Average 93 stars, based on 375 article reviews
    escherichia coli strains hb101 - by Bioz Stars, 2026-09
    93/100 stars

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    Cell Culture:

    Article Title: Novel action of proline-rich antimicrobial peptides Api88, Api137, Onc72 and Onc112 against Pseudomonas aeruginosa and Escherichia coli in ion-rich environments
    Article Snippet: .. Pseudomonas aeruginosa (ATCC 47085) and Escherichia coli strains (ATCC 25922) from the Melbourne Dental School culture collection were cultured from freeze dried stocks and maintained on horse blood agar plates supplemented with 10 % (v/v) lysed horse blood. ..



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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. <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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    Performance of the SLST assay on spike-in mixtures of C. acnes <t>DNA</t> with increasing background DNA. (A) Total number of full-length SLST sequences reconstructed from spike-in mixtures containing decreasing proportions of C. acnes <t>genomic</t> <t>DNA</t> (SpikeMix-50, -10, -5, and -0.5) supplemented with E. coli DNA. Bars represent mean counts across replicates (± SD), and dots indicate individual replicates. (B) Relative abundances of SLST types recovered from the same spike-in mixtures, shown alongside the theoretical composition (Expected, left). Stacked bars illustrate the five targeted SLST types (A1, G1, H2, K2, L1), with residual reads grouped as “Others (< 1%)” and “Unassigned.” All SpikeMix samples were processed without pre-amplification, using 2 µL of purified DNA at 0.125 ng/µL (total input 0.25 ng) directly into the molecular barcoding step, yielding absolute C. acnes DNA inputs of 125 pg (SpikeMix-50), 25 pg (SpikeMix-10), 12.5 pg (SpikeMix-5), and 1.25 pg (SpikeMix-0.5).
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    Performance of the SLST assay on spike-in mixtures of C. acnes <t>DNA</t> with increasing background DNA. (A) Total number of full-length SLST sequences reconstructed from spike-in mixtures containing decreasing proportions of C. acnes <t>genomic</t> <t>DNA</t> (SpikeMix-50, -10, -5, and -0.5) supplemented with E. coli DNA. Bars represent mean counts across replicates (± SD), and dots indicate individual replicates. (B) Relative abundances of SLST types recovered from the same spike-in mixtures, shown alongside the theoretical composition (Expected, left). Stacked bars illustrate the five targeted SLST types (A1, G1, H2, K2, L1), with residual reads grouped as “Others (< 1%)” and “Unassigned.” All SpikeMix samples were processed without pre-amplification, using 2 µL of purified DNA at 0.125 ng/µL (total input 0.25 ng) directly into the molecular barcoding step, yielding absolute C. acnes DNA inputs of 125 pg (SpikeMix-50), 25 pg (SpikeMix-10), 12.5 pg (SpikeMix-5), and 1.25 pg (SpikeMix-0.5).
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    ATCC gram negative strain escherichia coli atcc 25922
    Performance of the SLST assay on spike-in mixtures of C. acnes <t>DNA</t> with increasing background DNA. (A) Total number of full-length SLST sequences reconstructed from spike-in mixtures containing decreasing proportions of C. acnes <t>genomic</t> <t>DNA</t> (SpikeMix-50, -10, -5, and -0.5) supplemented with E. coli DNA. Bars represent mean counts across replicates (± SD), and dots indicate individual replicates. (B) Relative abundances of SLST types recovered from the same spike-in mixtures, shown alongside the theoretical composition (Expected, left). Stacked bars illustrate the five targeted SLST types (A1, G1, H2, K2, L1), with residual reads grouped as “Others (< 1%)” and “Unassigned.” All SpikeMix samples were processed without pre-amplification, using 2 µL of purified DNA at 0.125 ng/µL (total input 0.25 ng) directly into the molecular barcoding step, yielding absolute C. acnes DNA inputs of 125 pg (SpikeMix-50), 25 pg (SpikeMix-10), 12.5 pg (SpikeMix-5), and 1.25 pg (SpikeMix-0.5).
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    ATCC escherichia coli strain mg1655
    Performance of the SLST assay on spike-in mixtures of C. acnes <t>DNA</t> with increasing background DNA. (A) Total number of full-length SLST sequences reconstructed from spike-in mixtures containing decreasing proportions of C. acnes <t>genomic</t> <t>DNA</t> (SpikeMix-50, -10, -5, and -0.5) supplemented with E. coli DNA. Bars represent mean counts across replicates (± SD), and dots indicate individual replicates. (B) Relative abundances of SLST types recovered from the same spike-in mixtures, shown alongside the theoretical composition (Expected, left). Stacked bars illustrate the five targeted SLST types (A1, G1, H2, K2, L1), with residual reads grouped as “Others (< 1%)” and “Unassigned.” All SpikeMix samples were processed without pre-amplification, using 2 µL of purified DNA at 0.125 ng/µL (total input 0.25 ng) directly into the molecular barcoding step, yielding absolute C. acnes DNA inputs of 125 pg (SpikeMix-50), 25 pg (SpikeMix-10), 12.5 pg (SpikeMix-5), and 1.25 pg (SpikeMix-0.5).
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    ATCC host bacteria strains escherichia coli atcc 25922
    Performance of the SLST assay on spike-in mixtures of C. acnes <t>DNA</t> with increasing background DNA. (A) Total number of full-length SLST sequences reconstructed from spike-in mixtures containing decreasing proportions of C. acnes <t>genomic</t> <t>DNA</t> (SpikeMix-50, -10, -5, and -0.5) supplemented with E. coli DNA. Bars represent mean counts across replicates (± SD), and dots indicate individual replicates. (B) Relative abundances of SLST types recovered from the same spike-in mixtures, shown alongside the theoretical composition (Expected, left). Stacked bars illustrate the five targeted SLST types (A1, G1, H2, K2, L1), with residual reads grouped as “Others (< 1%)” and “Unassigned.” All SpikeMix samples were processed without pre-amplification, using 2 µL of purified DNA at 0.125 ng/µL (total input 0.25 ng) directly into the molecular barcoding step, yielding absolute C. acnes DNA inputs of 125 pg (SpikeMix-50), 25 pg (SpikeMix-10), 12.5 pg (SpikeMix-5), and 1.25 pg (SpikeMix-0.5).
    Host Bacteria Strains Escherichia Coli Atcc 25922, supplied by ATCC, used in various techniques. Bioz Stars score: 99/100, based on 1 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
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    Image Search Results


    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

    Performance of the SLST assay on spike-in mixtures of C. acnes DNA with increasing background DNA. (A) Total number of full-length SLST sequences reconstructed from spike-in mixtures containing decreasing proportions of C. acnes genomic DNA (SpikeMix-50, -10, -5, and -0.5) supplemented with E. coli DNA. Bars represent mean counts across replicates (± SD), and dots indicate individual replicates. (B) Relative abundances of SLST types recovered from the same spike-in mixtures, shown alongside the theoretical composition (Expected, left). Stacked bars illustrate the five targeted SLST types (A1, G1, H2, K2, L1), with residual reads grouped as “Others (< 1%)” and “Unassigned.” All SpikeMix samples were processed without pre-amplification, using 2 µL of purified DNA at 0.125 ng/µL (total input 0.25 ng) directly into the molecular barcoding step, yielding absolute C. acnes DNA inputs of 125 pg (SpikeMix-50), 25 pg (SpikeMix-10), 12.5 pg (SpikeMix-5), and 1.25 pg (SpikeMix-0.5).

    Journal: Frontiers in Cellular and Infection Microbiology

    Article Title: UMI-guided single locus sequence typing method for phylotyping Cutibacterium acnes from skin samples

    doi: 10.3389/fcimb.2026.1807759

    Figure Lengend Snippet: Performance of the SLST assay on spike-in mixtures of C. acnes DNA with increasing background DNA. (A) Total number of full-length SLST sequences reconstructed from spike-in mixtures containing decreasing proportions of C. acnes genomic DNA (SpikeMix-50, -10, -5, and -0.5) supplemented with E. coli DNA. Bars represent mean counts across replicates (± SD), and dots indicate individual replicates. (B) Relative abundances of SLST types recovered from the same spike-in mixtures, shown alongside the theoretical composition (Expected, left). Stacked bars illustrate the five targeted SLST types (A1, G1, H2, K2, L1), with residual reads grouped as “Others (< 1%)” and “Unassigned.” All SpikeMix samples were processed without pre-amplification, using 2 µL of purified DNA at 0.125 ng/µL (total input 0.25 ng) directly into the molecular barcoding step, yielding absolute C. acnes DNA inputs of 125 pg (SpikeMix-50), 25 pg (SpikeMix-10), 12.5 pg (SpikeMix-5), and 1.25 pg (SpikeMix-0.5).

    Article Snippet: This community was supplemented with Escherichia coli genomic DNA (ATCC 8739D-5) to progressively reduce the fraction of C. acnes DNA.

    Techniques: Amplification, Purification