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igg3 heavy chain specific antibody  (Bethyl)


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    Structured Review

    Bethyl igg3 heavy chain specific antibody
    FIG. 4. Changes in the amount of serovar Typhimurium LPS-spe- cific <t>IgG</t> in serum and local S-IgA in bile after a single oral inoculation of serovar Typhimurium CS2007 or CS2022 at a dose of 5 108 CFU. Mice were harvested at weeks 1, 2, 3, 4, 8, and 12 after inoculation with 5 108 CFU, and an ELISA was carried out to detect the serovar Typhimurium LPS-specific IgG in micrograms per milliliter of serum (A) and S-IgA in micrograms per gallbladder (B). Shown are the combined results from three experiments. Data represent the means SD (n 5 to 15). *, P 0.8.
    Igg3 Heavy Chain Specific Antibody, supplied by Bethyl, used in various techniques. Bioz Stars score: 93/100, based on 121 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
    https://www.bioz.com/product/igg3+heavy+chain+specific+antibody/10__1128_slash_iai__71__1__30___39__2003-80-35-48?v=Bethyl
    Average 93 stars, based on 121 article reviews
    igg3 heavy chain specific antibody - by Bioz Stars, 2026-08
    93/100 stars

    Images

    1) Product Images from "Oral Immunization with ATP-Dependent Protease-Deficient Mutants Protects Mice against Subsequent Oral Challenge with Virulent Salmonella enterica Serovar Typhimurium"

    Article Title: Oral Immunization with ATP-Dependent Protease-Deficient Mutants Protects Mice against Subsequent Oral Challenge with Virulent Salmonella enterica Serovar Typhimurium

    Journal: Infection and Immunity

    doi: 10.1128/iai.71.1.30-39.2003

    FIG. 4. Changes in the amount of serovar Typhimurium LPS-spe- cific IgG in serum and local S-IgA in bile after a single oral inoculation of serovar Typhimurium CS2007 or CS2022 at a dose of 5 108 CFU. Mice were harvested at weeks 1, 2, 3, 4, 8, and 12 after inoculation with 5 108 CFU, and an ELISA was carried out to detect the serovar Typhimurium LPS-specific IgG in micrograms per milliliter of serum (A) and S-IgA in micrograms per gallbladder (B). Shown are the combined results from three experiments. Data represent the means SD (n 5 to 15). *, P 0.8.
    Figure Legend Snippet: FIG. 4. Changes in the amount of serovar Typhimurium LPS-spe- cific IgG in serum and local S-IgA in bile after a single oral inoculation of serovar Typhimurium CS2007 or CS2022 at a dose of 5 108 CFU. Mice were harvested at weeks 1, 2, 3, 4, 8, and 12 after inoculation with 5 108 CFU, and an ELISA was carried out to detect the serovar Typhimurium LPS-specific IgG in micrograms per milliliter of serum (A) and S-IgA in micrograms per gallbladder (B). Shown are the combined results from three experiments. Data represent the means SD (n 5 to 15). *, P 0.8.

    Techniques Used: Enzyme-linked Immunosorbent Assay

    FIG. 7. Booster immunization by the serovar Typhimurium chal- lenge. Immune mice were orally challenged with the virulent strain of serovar Typhimurium. Mice were harvested 5 days after the challenge, as described in the Fig. 6 legend. An ELISA was carried out to detect the serovar Typhimurium LPS-specific IgG in serum (A) and S-IgA in bile (B). Data represent the means SD (n 5 to 10).
    Figure Legend Snippet: FIG. 7. Booster immunization by the serovar Typhimurium chal- lenge. Immune mice were orally challenged with the virulent strain of serovar Typhimurium. Mice were harvested 5 days after the challenge, as described in the Fig. 6 legend. An ELISA was carried out to detect the serovar Typhimurium LPS-specific IgG in serum (A) and S-IgA in bile (B). Data represent the means SD (n 5 to 10).

    Techniques Used: Enzyme-linked Immunosorbent Assay

    FIG. 8. IgG subclass antibody titers. The serum IgG subclass anti- serovar Typhimurium LPS titers in Fig. 7 are shown. Data represent the means SD (n 5). *, P 0.2 compared with each IgG2a sample of no-challenge mice.
    Figure Legend Snippet: FIG. 8. IgG subclass antibody titers. The serum IgG subclass anti- serovar Typhimurium LPS titers in Fig. 7 are shown. Data represent the means SD (n 5). *, P 0.2 compared with each IgG2a sample of no-challenge mice.

    Techniques Used:



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    FIG. 4. Changes in the amount of serovar Typhimurium LPS-spe- cific <t>IgG</t> in serum and local S-IgA in bile after a single oral inoculation of serovar Typhimurium CS2007 or CS2022 at a dose of 5 108 CFU. Mice were harvested at weeks 1, 2, 3, 4, 8, and 12 after inoculation with 5 108 CFU, and an ELISA was carried out to detect the serovar Typhimurium LPS-specific IgG in micrograms per milliliter of serum (A) and S-IgA in micrograms per gallbladder (B). Shown are the combined results from three experiments. Data represent the means SD (n 5 to 15). *, P 0.8.
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    Image Search Results


    FIG. 4. Changes in the amount of serovar Typhimurium LPS-spe- cific IgG in serum and local S-IgA in bile after a single oral inoculation of serovar Typhimurium CS2007 or CS2022 at a dose of 5 108 CFU. Mice were harvested at weeks 1, 2, 3, 4, 8, and 12 after inoculation with 5 108 CFU, and an ELISA was carried out to detect the serovar Typhimurium LPS-specific IgG in micrograms per milliliter of serum (A) and S-IgA in micrograms per gallbladder (B). Shown are the combined results from three experiments. Data represent the means SD (n 5 to 15). *, P 0.8.

    Journal: Infection and Immunity

    Article Title: Oral Immunization with ATP-Dependent Protease-Deficient Mutants Protects Mice against Subsequent Oral Challenge with Virulent Salmonella enterica Serovar Typhimurium

    doi: 10.1128/iai.71.1.30-39.2003

    Figure Lengend Snippet: FIG. 4. Changes in the amount of serovar Typhimurium LPS-spe- cific IgG in serum and local S-IgA in bile after a single oral inoculation of serovar Typhimurium CS2007 or CS2022 at a dose of 5 108 CFU. Mice were harvested at weeks 1, 2, 3, 4, 8, and 12 after inoculation with 5 108 CFU, and an ELISA was carried out to detect the serovar Typhimurium LPS-specific IgG in micrograms per milliliter of serum (A) and S-IgA in micrograms per gallbladder (B). Shown are the combined results from three experiments. Data represent the means SD (n 5 to 15). *, P 0.8.

    Article Snippet: After incubation for 1 h at 37°C, plates were washed and 100 l of goat anti-mouse horseradish peroxidase (HRPO) conjugate immunoglobulin G (IgG) heavy- and light-chain antibody; goat anti-mouse HRPO conjugate IgG1, IgG2a, IgG2b, or IgG3 heavy-chain specific antibody; or goat anti-mouse HRPO conjugate IgA alpha-chain specific antibody (Bethyl, Montgomery, Tex.) diluted in PBS-T was added to each well.

    Techniques: Enzyme-linked Immunosorbent Assay

    FIG. 7. Booster immunization by the serovar Typhimurium chal- lenge. Immune mice were orally challenged with the virulent strain of serovar Typhimurium. Mice were harvested 5 days after the challenge, as described in the Fig. 6 legend. An ELISA was carried out to detect the serovar Typhimurium LPS-specific IgG in serum (A) and S-IgA in bile (B). Data represent the means SD (n 5 to 10).

    Journal: Infection and Immunity

    Article Title: Oral Immunization with ATP-Dependent Protease-Deficient Mutants Protects Mice against Subsequent Oral Challenge with Virulent Salmonella enterica Serovar Typhimurium

    doi: 10.1128/iai.71.1.30-39.2003

    Figure Lengend Snippet: FIG. 7. Booster immunization by the serovar Typhimurium chal- lenge. Immune mice were orally challenged with the virulent strain of serovar Typhimurium. Mice were harvested 5 days after the challenge, as described in the Fig. 6 legend. An ELISA was carried out to detect the serovar Typhimurium LPS-specific IgG in serum (A) and S-IgA in bile (B). Data represent the means SD (n 5 to 10).

    Article Snippet: After incubation for 1 h at 37°C, plates were washed and 100 l of goat anti-mouse horseradish peroxidase (HRPO) conjugate immunoglobulin G (IgG) heavy- and light-chain antibody; goat anti-mouse HRPO conjugate IgG1, IgG2a, IgG2b, or IgG3 heavy-chain specific antibody; or goat anti-mouse HRPO conjugate IgA alpha-chain specific antibody (Bethyl, Montgomery, Tex.) diluted in PBS-T was added to each well.

    Techniques: Enzyme-linked Immunosorbent Assay

    FIG. 8. IgG subclass antibody titers. The serum IgG subclass anti- serovar Typhimurium LPS titers in Fig. 7 are shown. Data represent the means SD (n 5). *, P 0.2 compared with each IgG2a sample of no-challenge mice.

    Journal: Infection and Immunity

    Article Title: Oral Immunization with ATP-Dependent Protease-Deficient Mutants Protects Mice against Subsequent Oral Challenge with Virulent Salmonella enterica Serovar Typhimurium

    doi: 10.1128/iai.71.1.30-39.2003

    Figure Lengend Snippet: FIG. 8. IgG subclass antibody titers. The serum IgG subclass anti- serovar Typhimurium LPS titers in Fig. 7 are shown. Data represent the means SD (n 5). *, P 0.2 compared with each IgG2a sample of no-challenge mice.

    Article Snippet: After incubation for 1 h at 37°C, plates were washed and 100 l of goat anti-mouse horseradish peroxidase (HRPO) conjugate immunoglobulin G (IgG) heavy- and light-chain antibody; goat anti-mouse HRPO conjugate IgG1, IgG2a, IgG2b, or IgG3 heavy-chain specific antibody; or goat anti-mouse HRPO conjugate IgA alpha-chain specific antibody (Bethyl, Montgomery, Tex.) diluted in PBS-T was added to each well.

    Techniques: