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goat anti mouse igg podconjugate  (SouthernBiotech)


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    Structured Review

    SouthernBiotech goat anti mouse igg podconjugate
    Goat Anti Mouse Igg Podconjugate, supplied by SouthernBiotech, used in various techniques. Bioz Stars score: 95/100, based on 200 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
    https://www.bioz.com/product/goat+anti+mouse+ig+hrp/Goat+Anti-Mouse+Ig%2C+Human+ads-HRP/pm41917001-467-21-26
    Average 95 stars, based on 200 article reviews
    goat anti mouse igg podconjugate - by Bioz Stars, 2026-09
    95/100 stars

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    Related Articles

    Binding Assay:

    Article Title: Clinical Relevance of Computationally Derived Tubular Features: Spatial Relationships and the Development of Tubulointerstitial Scarring in MCD/FSGS
    Article Snippet: The coverslip was then removed, and sections were immersed in 10 mM sodium citrate buffer (pH 6.0, ab93678, Abcam) at 95°C for 2 hours for antigen retrieval and then were incubated at 4°C overnight with the primary antibody cocktail by mixing rabbit anti-AE1/AE3 antibody (ready to use, GA05361-2, Agilent) and mouse anti-ALDOB antibody (1:900, HPA002198, Sigma). .. Antibody binding was detected by using secondary antibody cocktail containing goat anti-Rabbit Ig-HRP (1:50, 4010-05, Southern Biotech) and goat anti-mouse Ig-HRP (1:100, 1010-05, Southern Biotech) and betazoid DAB chromogen kit (BDB2004, Biocare Medical). ..

    Enzyme-linked Immunosorbent Assay:

    Article Title: Regulatory T cells function in established systemic inflammation and reverse fatal autoimmunity.
    Article Snippet: 1Howard Hughes Medical Institute, Immunology Program, and Ludwig Center, Memorial Sloan Kettering Cancer Center, New York, NY, USA.. 2Gerstner Sloan Kettering Graduate School of Biomedical Sciences, Memorial Sloan Kettering Cancer Center, New York, NY, USA.. 3Immunology and Microbial Pathogenesis Program, Weill Cornell Graduate School of Medical Sciences, New York, NY, USA.

    Article Title: Regulatory T Cells Function in Established Systemic Inflammation and Reverse Fatal Autoimmunity
    Article Snippet: The following antibodies were used to capture antigens for ELISA in this study: purified anti-mouse IgE (R35-72, BD Pharmingen, 553413), Goat Anti-Mouse IgG1 (RRID: AB_2794408, SouthernBiotech, 1070-01), Goat Anti-Mouse IgG3 (RRID: AB_2794567, SouthernBiotech, 1100-01), Goat Anti-Mouse IgG2a (RRID: AB_2794475, SouthernBiotech, 1080-01), Goat Anti-Mouse IgG2b (RRID: AB_2794517, SouthernBiotech, 1090-01), Goat Anti-Mouse IgG2c (RRID: AB_2794464, SouthernBiotech, 1079-01), Goat Anti-Mouse IgA (RRID: AB_2314669, SouthernBiotech, 1040-01), Goat Anti-Mouse IgM (RRID: AB_2794197, SouthernBiotech, 1020-01), Mouse Pentraxin 2/SAP Antibody (R & D Systems, MAB2558). .. The following antibodies were used to detect antigens for ELISA in this study: Goat Anti-Mouse Ig-HRP (RRID: AB_2728714, SouthernBiotech, 1010-05), Biotin Rat Anti-Mouse IgE (R35-118, BD Pharmingen, 553419), Biotinylated Pentraxin 2/SAP Antibody (R & D Systems, BAF2558). .. The following reagents were used to construct standard curves for ELISA in this study: Purified Mouse IgE, kappa, Isotype Control (C38-2, BD Pharmingen, 557079), Purified Mouse IgA, kappa, Isotype Control (M18-254, BD Pharmingen, 553476), Purified Mouse IgG3, kappa, Isotype Control (A112-3, BD Pharmingen, 553486), Purified Mouse IgG1, kappa, Isotype Control (15H6, SouthernBiotech, 0102-01), Purified Mouse IgG2a, kappa, Isotype Control (UPC-10, Sigma, M5409), IgM Isotype Control from murine myeloma (MOPC 104E, Sigma, M5909), IgG2b Isotype Control from murine myeloma (MOPC-141, Sigma, M5534), Mouse IgG2c (6.3, RRID: AB_2794064, SouthernBiotech, 0122-01), Recombinant Mouse Pentraxin 2 (R & D Systems, 2558-SA-050).

    other:

    Article Title: Neolactotetraosylceramide enables urinary detection of bladder cancer
    Article Snippet: Goat anti-mouse Ig-HRP , SouthernBiotech, Germany , Cat# 1010-05; RRID:AB_2728714.

    Blocking Assay:

    Article Title: Structure-based design of a soluble human cytomegalovirus glycoprotein B antigen stabilized in a prefusion-like conformation
    Article Snippet: .. Next, goat anti-mouse Ig HRP (Southern Biotech, Cat. #1010-05) secondary antibody was diluted 1:2000 in blocking buffer and applied to the plate for 1 hour. ..

    Article Title: Structure-based design of a soluble human cytomegalovirus glycoprotein B antigen stabilized in a prefusion-like conformation
    Article Snippet: .. The secondary antibody used was goat anti-mouse Ig HRP (Southern Biotech, Cat. #1010-05) diluted 1:2000 in blocking buffer, which was applied to the plate for 1 hour. ..

    Incubation:

    Article Title: A Glycovariant of Human CD44 is Characteristically Expressed on Human Mesenchymal Stem Cells
    Article Snippet: For detection of sLe X , membranes were incubated with rat HECA452 mAb, followed by staining with goat anti-rat IgM-HRP (Southern Biotech). .. For detection of CD44, membranes were incubated with mouse anti-human CD44 (Clone 2C5; IgG 2 ), followed by staining with goat anti-mouse Ig-HRP (Southern Biotech). .. HRP conjugated antibodies were detected by chemiluminiscence using Lumi-Light Western blotting substrate (Roche).

    Staining:

    Article Title: A Glycovariant of Human CD44 is Characteristically Expressed on Human Mesenchymal Stem Cells
    Article Snippet: For detection of sLe X , membranes were incubated with rat HECA452 mAb, followed by staining with goat anti-rat IgM-HRP (Southern Biotech). .. For detection of CD44, membranes were incubated with mouse anti-human CD44 (Clone 2C5; IgG 2 ), followed by staining with goat anti-mouse Ig-HRP (Southern Biotech). .. HRP conjugated antibodies were detected by chemiluminiscence using Lumi-Light Western blotting substrate (Roche).



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    KEAP1 is the direct target of TUS. (A) Scheme of TUSP synthesis. Reagents and reaction conditions, a, HCl, H 2 O, THF, rt, 12 h. b, 2,4,6-trichloro-benzoyl chloride, triethylamine, DMAP, DCM, rt, 12 h. (B-C) The inhibition of TUS or TUSP on TNF-α and NO induced by LPS. RAW 264.7 macrophages were treated with 1 μg/mL LPS and 6.3, 12.5, 25, 50 μM TUS or TUSP for 24 h, the level of TNF-α and NO were detected and compared. (D) KEAP1 was identified as the direct binding target of TUS. The cell lysate of Beas-2B cells was incubated with TUSP or biotin (negative control) for 1 h, and pulled down with <t>streptavidin-conjugated</t> beads. Subsequently, the bound proteins were detected using SDS-PAGE gel, followed by silver staining for visualization and LC-MS/MS analysis for identification. (E-F) The binding of TUS with KEAP1 in Beas-2B cells and recombinant human KEAP1 protein were detected using Western blot. Cell lysate or recombinant human KEAP1 were incubated with TUSP or biotin (negative control) for 1 h, and pulled down with streptavidin-conjugated beads, KEAP1 levels were detected with Western blot. (G) CETSA suggested that TUS improved the thermal stability of KEAP1 protein at different temperatures. Beas-2B cells were treated with 20 μM TUS or DMSO (negative control) for 8 h, then the thermal stability of KEAP1 was detected with CETSA assay. (H) DARTS suggested that TUS improved the enzymatic stability of KEAP1 against pronase E. Cell lysate was incubated with 0, 5, 10, 20, 40 μM TUS or DMSO (negative control) for 1 h, followed by addition of 500 ng/mL pronase E. KEAP1 levels were detected with Western blot. (I) SPR assay showed the kinetics of increasing concentrations of TUS binding to KEAP1.
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    KEAP1 is the direct target of TUS. (A) Scheme of TUSP synthesis. Reagents and reaction conditions, a, HCl, H 2 O, THF, rt, 12 h. b, 2,4,6-trichloro-benzoyl chloride, triethylamine, DMAP, DCM, rt, 12 h. (B-C) The inhibition of TUS or TUSP on TNF-α and NO induced by LPS. RAW 264.7 macrophages were treated with 1 μg/mL LPS and 6.3, 12.5, 25, 50 μM TUS or TUSP for 24 h, the level of TNF-α and NO were detected and compared. (D) KEAP1 was identified as the direct binding target of TUS. The cell lysate of Beas-2B cells was incubated with TUSP or biotin (negative control) for 1 h, and pulled down with <t>streptavidin-conjugated</t> beads. Subsequently, the bound proteins were detected using SDS-PAGE gel, followed by silver staining for visualization and LC-MS/MS analysis for identification. (E-F) The binding of TUS with KEAP1 in Beas-2B cells and recombinant human KEAP1 protein were detected using Western blot. Cell lysate or recombinant human KEAP1 were incubated with TUSP or biotin (negative control) for 1 h, and pulled down with streptavidin-conjugated beads, KEAP1 levels were detected with Western blot. (G) CETSA suggested that TUS improved the thermal stability of KEAP1 protein at different temperatures. Beas-2B cells were treated with 20 μM TUS or DMSO (negative control) for 8 h, then the thermal stability of KEAP1 was detected with CETSA assay. (H) DARTS suggested that TUS improved the enzymatic stability of KEAP1 against pronase E. Cell lysate was incubated with 0, 5, 10, 20, 40 μM TUS or DMSO (negative control) for 1 h, followed by addition of 500 ng/mL pronase E. KEAP1 levels were detected with Western blot. (I) SPR assay showed the kinetics of increasing concentrations of TUS binding to KEAP1.
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    KEAP1 is the direct target of TUS. (A) Scheme of TUSP synthesis. Reagents and reaction conditions, a, HCl, H 2 O, THF, rt, 12 h. b, 2,4,6-trichloro-benzoyl chloride, triethylamine, DMAP, DCM, rt, 12 h. (B-C) The inhibition of TUS or TUSP on TNF-α and NO induced by LPS. RAW 264.7 macrophages were treated with 1 μg/mL LPS and 6.3, 12.5, 25, 50 μM TUS or TUSP for 24 h, the level of TNF-α and NO were detected and compared. (D) KEAP1 was identified as the direct binding target of TUS. The cell lysate of Beas-2B cells was incubated with TUSP or biotin (negative control) for 1 h, and pulled down with streptavidin-conjugated beads. Subsequently, the bound proteins were detected using SDS-PAGE gel, followed by silver staining for visualization and LC-MS/MS analysis for identification. (E-F) The binding of TUS with KEAP1 in Beas-2B cells and recombinant human KEAP1 protein were detected using Western blot. Cell lysate or recombinant human KEAP1 were incubated with TUSP or biotin (negative control) for 1 h, and pulled down with streptavidin-conjugated beads, KEAP1 levels were detected with Western blot. (G) CETSA suggested that TUS improved the thermal stability of KEAP1 protein at different temperatures. Beas-2B cells were treated with 20 μM TUS or DMSO (negative control) for 8 h, then the thermal stability of KEAP1 was detected with CETSA assay. (H) DARTS suggested that TUS improved the enzymatic stability of KEAP1 against pronase E. Cell lysate was incubated with 0, 5, 10, 20, 40 μM TUS or DMSO (negative control) for 1 h, followed by addition of 500 ng/mL pronase E. KEAP1 levels were detected with Western blot. (I) SPR assay showed the kinetics of increasing concentrations of TUS binding to KEAP1.

    Journal: Journal of Advanced Research

    Article Title: Tussilagone attenuated cigarette smoke-induced chronic obstructive pulmonary disease through regulating Nrf2 and NF-κB/NLRP3 inflammasome via directly targeting cysteine 434 of KEAP1

    doi: 10.1016/j.jare.2025.07.019

    Figure Lengend Snippet: KEAP1 is the direct target of TUS. (A) Scheme of TUSP synthesis. Reagents and reaction conditions, a, HCl, H 2 O, THF, rt, 12 h. b, 2,4,6-trichloro-benzoyl chloride, triethylamine, DMAP, DCM, rt, 12 h. (B-C) The inhibition of TUS or TUSP on TNF-α and NO induced by LPS. RAW 264.7 macrophages were treated with 1 μg/mL LPS and 6.3, 12.5, 25, 50 μM TUS or TUSP for 24 h, the level of TNF-α and NO were detected and compared. (D) KEAP1 was identified as the direct binding target of TUS. The cell lysate of Beas-2B cells was incubated with TUSP or biotin (negative control) for 1 h, and pulled down with streptavidin-conjugated beads. Subsequently, the bound proteins were detected using SDS-PAGE gel, followed by silver staining for visualization and LC-MS/MS analysis for identification. (E-F) The binding of TUS with KEAP1 in Beas-2B cells and recombinant human KEAP1 protein were detected using Western blot. Cell lysate or recombinant human KEAP1 were incubated with TUSP or biotin (negative control) for 1 h, and pulled down with streptavidin-conjugated beads, KEAP1 levels were detected with Western blot. (G) CETSA suggested that TUS improved the thermal stability of KEAP1 protein at different temperatures. Beas-2B cells were treated with 20 μM TUS or DMSO (negative control) for 8 h, then the thermal stability of KEAP1 was detected with CETSA assay. (H) DARTS suggested that TUS improved the enzymatic stability of KEAP1 against pronase E. Cell lysate was incubated with 0, 5, 10, 20, 40 μM TUS or DMSO (negative control) for 1 h, followed by addition of 500 ng/mL pronase E. KEAP1 levels were detected with Western blot. (I) SPR assay showed the kinetics of increasing concentrations of TUS binding to KEAP1.

    Article Snippet: The primary antibodies for KEAP1 (10503-2-AP, 1:5000), Nrf2 (16396-1-AP, 1:2000), glutamate-cystine ligase, modifier subunit (GCLM, 14241-1-AP, 1:2000), cyclooxygenase-2 (COX-2, 27308-1-AP, 1:1000), IL-1β (16806-1-AP, 1:500), β-actin (20536-1-AP, 1:30000), inducible Nitric Oxide Synthase (iNOS, 22226-1-AP, 1:2000), HA (51064-2-AP, 1:2000), inhibitor of NF-κB (IκB, 10268-1-AP, 1:2000), Caspase-1 (22915-1-AP, 1:2000), NLRP3 (27458-1-AP, 1:2000), α-tubulin (11224-1-AP, 1:10000), and the secondary antibodies HRP-conjugated goat anti-mouse IgG (66031-1-Ig, 1:10000) and HRP-conjugated goat anti-rabbit IgG (66031-2-Ig, 1:10000) were purchased from Proteintech Group (Wuhan, China).

    Techniques: Inhibition, Binding Assay, Incubation, Negative Control, SDS Page, Silver Staining, Liquid Chromatography with Mass Spectroscopy, Recombinant, Western Blot, SPR Assay

    Cys434 is the crucial amino acid for the binding of TUS to KEAP1. (A) IAA blocked the binding of TUS to KEAP1. Cell lysate was incubated with 200 μM IAA or TUS for 1 h, followed by 20 μM TUSP or biotin (negative control) for another 1 h. Target proteins were pulled down with streptavidin-conjugated beads, and KEAP1 levels were detected with Western blot. (B) LC-MS/MS indicated that Cys434 was the binding site of TUS to KEAP1. The human recombinant protein KEAP1 was incubated with TUS for 1 h, followed by digestion and mass spectrometry analysis to identify the binding sites of TUS. (C) C434A mutation abolished the binding activity between TUS and KEAP1. (D) DARTS suggested that TUS had no effect on the enzymatic stability of KEAP1 against pronase E. (E) CETSA indicated that TUS had no effect on the thermal stability of the KEAP1 protein after the C434A mutation. (F) The binding of TUS to WT or C434A mutant recombinant human KEAP1 proteins was detected using pulldown assay and Western blot analysis. (G) Classification of highly reactive cysteines and inducers of KEAP1.

    Journal: Journal of Advanced Research

    Article Title: Tussilagone attenuated cigarette smoke-induced chronic obstructive pulmonary disease through regulating Nrf2 and NF-κB/NLRP3 inflammasome via directly targeting cysteine 434 of KEAP1

    doi: 10.1016/j.jare.2025.07.019

    Figure Lengend Snippet: Cys434 is the crucial amino acid for the binding of TUS to KEAP1. (A) IAA blocked the binding of TUS to KEAP1. Cell lysate was incubated with 200 μM IAA or TUS for 1 h, followed by 20 μM TUSP or biotin (negative control) for another 1 h. Target proteins were pulled down with streptavidin-conjugated beads, and KEAP1 levels were detected with Western blot. (B) LC-MS/MS indicated that Cys434 was the binding site of TUS to KEAP1. The human recombinant protein KEAP1 was incubated with TUS for 1 h, followed by digestion and mass spectrometry analysis to identify the binding sites of TUS. (C) C434A mutation abolished the binding activity between TUS and KEAP1. (D) DARTS suggested that TUS had no effect on the enzymatic stability of KEAP1 against pronase E. (E) CETSA indicated that TUS had no effect on the thermal stability of the KEAP1 protein after the C434A mutation. (F) The binding of TUS to WT or C434A mutant recombinant human KEAP1 proteins was detected using pulldown assay and Western blot analysis. (G) Classification of highly reactive cysteines and inducers of KEAP1.

    Article Snippet: The primary antibodies for KEAP1 (10503-2-AP, 1:5000), Nrf2 (16396-1-AP, 1:2000), glutamate-cystine ligase, modifier subunit (GCLM, 14241-1-AP, 1:2000), cyclooxygenase-2 (COX-2, 27308-1-AP, 1:1000), IL-1β (16806-1-AP, 1:500), β-actin (20536-1-AP, 1:30000), inducible Nitric Oxide Synthase (iNOS, 22226-1-AP, 1:2000), HA (51064-2-AP, 1:2000), inhibitor of NF-κB (IκB, 10268-1-AP, 1:2000), Caspase-1 (22915-1-AP, 1:2000), NLRP3 (27458-1-AP, 1:2000), α-tubulin (11224-1-AP, 1:10000), and the secondary antibodies HRP-conjugated goat anti-mouse IgG (66031-1-Ig, 1:10000) and HRP-conjugated goat anti-rabbit IgG (66031-2-Ig, 1:10000) were purchased from Proteintech Group (Wuhan, China).

    Techniques: Binding Assay, Incubation, Negative Control, Western Blot, Liquid Chromatography with Mass Spectroscopy, Recombinant, Mass Spectrometry, Mutagenesis, Activity Assay

    AMEV5 vaccination generated rAMEV5-specific antibody-producing B-cells and IL-5 secreting T-cells in the spleen. BALB/c mice ( n = 3 per group) were subcutaneously vaccinated with either PBS + AddaS03 (mock) or rAMEV5 (10 µg) + AddaS03 (AMEV5) on days 0 and 14. Splenocytes were prepared on day 21. ( A ) Representative B-cell ELISpots are shown, and the frequency of antibody secreting cells (ASCs) was calculated for cells that secreted antibodies reacting with PBS, rAMEV5 or hen egg lysozyme (HEL, an unrelated antigen control). Wells coated with goat anti-mouse Ig(H+L) served as positive control. ( B ) Representative T-cell ELISpots are shown, and spot forming units (SFUs) were calculated for cells that secreted IL-5 upon stimulation with PBS, rAMEV5, or HEL. Splenocytes stimulated with α-CD3 were used as a positive control. Data are presented as mean ± SD. * p < 0.05, unpaired t-test compared to mock.

    Journal: Vaccines

    Article Title: Generation and Evaluation of a Multi-Epitope Vaccine Against Acinetobacter baumannii , a Nosocomial Bacterial Pathogen

    doi: 10.3390/vaccines14030275

    Figure Lengend Snippet: AMEV5 vaccination generated rAMEV5-specific antibody-producing B-cells and IL-5 secreting T-cells in the spleen. BALB/c mice ( n = 3 per group) were subcutaneously vaccinated with either PBS + AddaS03 (mock) or rAMEV5 (10 µg) + AddaS03 (AMEV5) on days 0 and 14. Splenocytes were prepared on day 21. ( A ) Representative B-cell ELISpots are shown, and the frequency of antibody secreting cells (ASCs) was calculated for cells that secreted antibodies reacting with PBS, rAMEV5 or hen egg lysozyme (HEL, an unrelated antigen control). Wells coated with goat anti-mouse Ig(H+L) served as positive control. ( B ) Representative T-cell ELISpots are shown, and spot forming units (SFUs) were calculated for cells that secreted IL-5 upon stimulation with PBS, rAMEV5, or HEL. Splenocytes stimulated with α-CD3 were used as a positive control. Data are presented as mean ± SD. * p < 0.05, unpaired t-test compared to mock.

    Article Snippet: A peroxidase-labeled goat anti-mouse Ig(H+L) antibody (1:4000 dilution; #1010-05 SouthernBiotech, Birmingham, AL, USA), goat anti-mouse IgG1 (1:5000, #1070-05), and goat anti-mouse IgG2a (1:5000 dilution, #1080-05) served as the secondary antibody in the indirect ELISA assay.

    Techniques: Generated, Control, Positive Control