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escherichia coli bacteriophage ms2  (ATCC)


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    Structured Review

    ATCC escherichia coli bacteriophage ms2
    Escherichia Coli Bacteriophage Ms2, supplied by ATCC, used in various techniques. Bioz Stars score: 97/100, based on 883 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
    https://www.bioz.com/product/ms2+bacteriophages/Escherichia+coli+bacteriophage+MS2/custom%4015597-b1%4042529042
    Average 97 stars, based on 883 article reviews
    escherichia coli bacteriophage ms2 - by Bioz Stars, 2026-09
    97/100 stars

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    Related Articles

    Plaque Assay:

    Article Title: Can prechlorination improve the permeate flux and water quality of gravity-driven membrane (GDM) filtration?
    Article Snippet: Gravity-driven membrane (GDM) filtration is currently limited by the relatively low permeate flux and poor water quality.. This study was aimed to investigate the effects of prechlorination (3 and 5 mgCl2/L) on the permeate flux and water quality in GDM filtration by analyzing the compositions and morphologies of the fouling layer and by evaluating virus removal and trihalomethane (THM) formation for short (7 cycles) and long (32 cycles) periods.. Prechlorination showed an increased permeate flux, contributing to enhanced cumulative water production (15–68%), which was achieved by lowering the extracellular polymeric substances (EPS) content (14–31%) and the formation of a relatively thinner and looser fouling layer.

    Mutagenesis:

    Article Title: Can prechlorination improve the permeate flux and water quality of gravity-driven membrane (GDM) filtration?
    Article Snippet: Gravity-driven membrane (GDM) filtration is currently limited by the relatively low permeate flux and poor water quality.. This study was aimed to investigate the effects of prechlorination (3 and 5 mgCl2/L) on the permeate flux and water quality in GDM filtration by analyzing the compositions and morphologies of the fouling layer and by evaluating virus removal and trihalomethane (THM) formation for short (7 cycles) and long (32 cycles) periods.. Prechlorination showed an increased permeate flux, contributing to enhanced cumulative water production (15–68%), which was achieved by lowering the extracellular polymeric substances (EPS) content (14–31%) and the formation of a relatively thinner and looser fouling layer.

    Article Title: Near dissolved organic matter microfiltration (NDOM MF) coupled with UVC LED disinfection to maximize the efficiency of water treatment for the removal of Giardia and Cryptosporidium.
    Article Snippet: Microfiltration (MF) membranes with a mean pore size same as or smaller than 0.45 μm have been typically used to separate pathogenic protozoa in water since materials larger than 0.45 μm are considered particulates.. However, 0.45 μm is too small to separate protozoa which are 4–6 μm (Cryptosporidium oocyst) or 8–15 μm (Giardia cyst) in size.. In this study, we optimized the mean pore size of MF membranes to maximize the producibility and guarantee a high removal rate simultaneously and proposed the membrane filtration using an MF membrane with an optimum mean pore size larger than but close to dissolved organic matter (DOM), which is called near DOM MF (NDOM MF).

    other:

    Article Title: Comparing the Fate and Transport of MS2 Bacteriophage and Sodium Fluorescein in a Karstic Chalk Aquifer
    Article Snippet: MS2 bacteriophages (ATCC 15597-B1), from the family Leviviridae , have an isoelectric point between 3.5 and 3.9 [ ] and are relatively small viruses at 20 to 25 nm in diameter.

    Control:

    Article Title: Inter-institutional laboratory standardization for SARS-CoV-2 surveillance through wastewater-based epidemiology applied to Mexico City
    Article Snippet: .. To evaluate the amount of viral genetic material lost during sample processing, an assay using MS2 bacteriophages (ATCC 15597-B1) as a process control was conducted in two of the five sampling sites chosen at random. .. Bacteriophages were propagated over an Escherichia coli (ATCC 15597) culture and harvested, which were used to spike one of the 35 mL aliquots of raw wastewater samples with a concentration of 2.3 × 10 11 plaque-forming units per mL (PFU/mL) of MS2 bacteriophages.

    Sampling:

    Article Title: Inter-institutional laboratory standardization for SARS-CoV-2 surveillance through wastewater-based epidemiology applied to Mexico City
    Article Snippet: .. To evaluate the amount of viral genetic material lost during sample processing, an assay using MS2 bacteriophages (ATCC 15597-B1) as a process control was conducted in two of the five sampling sites chosen at random. .. Bacteriophages were propagated over an Escherichia coli (ATCC 15597) culture and harvested, which were used to spike one of the 35 mL aliquots of raw wastewater samples with a concentration of 2.3 × 10 11 plaque-forming units per mL (PFU/mL) of MS2 bacteriophages.



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    Inactivation of (A) <t>MS2</t> bacteriophage under UV254 and (B) MS2 bacteriophage under UV222 (C) T1UV bacteriophage under UV222 at varying nitrate concentrations: 0, 4, and 8 mg-N/L (legend refers to nitrate concentration) in buffered lab water. Log reduction value (LRV) was calculated using </xref> , modeled fitted using </xref> . Error bars represent one standard deviation of the means ( n = 3). All UV doses were calculated using average irradiance which includes the water factor, reflectance factor, Petri factor and divergence factor.
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    ms2  (ATCC)
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    ATCC ms2
    Inactivation of (A) <t>MS2</t> bacteriophage under UV254 and (B) MS2 bacteriophage under UV222 (C) T1UV bacteriophage under UV222 at varying nitrate concentrations: 0, 4, and 8 mg-N/L (legend refers to nitrate concentration) in buffered lab water. Log reduction value (LRV) was calculated using </xref> , modeled fitted using </xref> . Error bars represent one standard deviation of the means ( n = 3). All UV doses were calculated using average irradiance which includes the water factor, reflectance factor, Petri factor and divergence factor.
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    ATCC bacteriophage ms2 atcc 15597 b1
    Inactivation of (A) <t>MS2</t> bacteriophage under UV254 and (B) MS2 bacteriophage under UV222 (C) T1UV bacteriophage under UV222 at varying nitrate concentrations: 0, 4, and 8 mg-N/L (legend refers to nitrate concentration) in buffered lab water. Log reduction value (LRV) was calculated using </xref> , modeled fitted using </xref> . Error bars represent one standard deviation of the means ( n = 3). All UV doses were calculated using average irradiance which includes the water factor, reflectance factor, Petri factor and divergence factor.
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    ATCC ms2 bacteriophage
    Inactivation of (A) <t>MS2</t> bacteriophage under UV254 and (B) MS2 bacteriophage under UV222 (C) T1UV bacteriophage under UV222 at varying nitrate concentrations: 0, 4, and 8 mg-N/L (legend refers to nitrate concentration) in buffered lab water. Log reduction value (LRV) was calculated using </xref> , modeled fitted using </xref> . Error bars represent one standard deviation of the means ( n = 3). All UV doses were calculated using average irradiance which includes the water factor, reflectance factor, Petri factor and divergence factor.
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    Nelson Laboratories ms2 bacteriophage

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    Image Search Results


    Inactivation of (A) MS2 bacteriophage under UV254 and (B) MS2 bacteriophage under UV222 (C) T1UV bacteriophage under UV222 at varying nitrate concentrations: 0, 4, and 8 mg-N/L (legend refers to nitrate concentration) in buffered lab water. Log reduction value (LRV) was calculated using </xref> , modeled fitted using </xref> . Error bars represent one standard deviation of the means ( n = 3). All UV doses were calculated using average irradiance which includes the water factor, reflectance factor, Petri factor and divergence factor.

    Journal: ACS Es&t Water

    Article Title: Role of Nitrate-Driven Radical Formation in Microorganism Inactivation under 222 nm UV Irradiation

    doi: 10.1021/acsestwater.5c01533

    Figure Lengend Snippet: Inactivation of (A) MS2 bacteriophage under UV254 and (B) MS2 bacteriophage under UV222 (C) T1UV bacteriophage under UV222 at varying nitrate concentrations: 0, 4, and 8 mg-N/L (legend refers to nitrate concentration) in buffered lab water. Log reduction value (LRV) was calculated using , modeled fitted using . Error bars represent one standard deviation of the means ( n = 3). All UV doses were calculated using average irradiance which includes the water factor, reflectance factor, Petri factor and divergence factor.

    Article Snippet: MS2 bacteriophages (ATCC 15597-B1) were propagated and quantified using E. coli F amp (ATCC 700891) as the host.

    Techniques: Concentration Assay, Standard Deviation

    MS2 inactivation rate constant at different initial nitrate, uric acid and TBA concentrations (table refers to the concentrations). Error bars represent standard deviation of duplicate experiments ( n = 2).

    Journal: ACS Es&t Water

    Article Title: Role of Nitrate-Driven Radical Formation in Microorganism Inactivation under 222 nm UV Irradiation

    doi: 10.1021/acsestwater.5c01533

    Figure Lengend Snippet: MS2 inactivation rate constant at different initial nitrate, uric acid and TBA concentrations (table refers to the concentrations). Error bars represent standard deviation of duplicate experiments ( n = 2).

    Article Snippet: MS2 bacteriophages (ATCC 15597-B1) were propagated and quantified using E. coli F amp (ATCC 700891) as the host.

    Techniques: Standard Deviation

    Journal: medRxiv

    Article Title: Converting Passive Filtration Media into Active Air Biofiltration Surfaces for Airborne Viral Reduction

    doi: 10.64898/2026.04.29.26352113

    Figure Lengend Snippet:

    Article Snippet: Aerosol challenge experiments were conducted at Nelson Laboratories using MS2 bacteriophage as the challenge organism under respiratory-relevant conditions.

    Techniques: Filtration