Cholera toxin antibody/antigen (BSA/OVA/KLH conjugated hapten)

anti-Cholera toxin antibody and Carrier-coupled antigen/immunogen (hapten-carrier conjugates)

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Product information

Catalog No.DescriptionUS $ Price (per mg)
GMP-SMT-158-11. BSA-Cholera toxin
2. Anti-Cholera toxin mouse monoclonal antibody
$2709.00
GMP-SMT-158-21. OVA-Cholera toxin
2. Anti-Cholera toxin mouse monoclonal antibody
$2709.00
GMP-SMT-158-31. BSA-Cholera toxin
2. Anti-Cholera toxin human monoclonal antibody
$2709.00
GMP-SMT-158-41. OVA-Cholera toxin
2. Anti-Cholera toxin human monoclonal antibody
$2709.00
GMP-SMT-158-Ag-1BSA-Cholera toxin$756.00
GMP-SMT-158-Ag-2OVA-Cholera toxin$756.00
GMP-SMT-158-Ab-1Anti-Cholera toxin mouse monoclonal antibody$1953.00
GMP-SMT-158-Ab-2Anti-Cholera toxin human monoclonal antibody$1953.00

Size: 1mg | 10mg | 100mg



Product Description


BSA-Cholera toxin

Cat No.GMP-SMT-158-Ag-1
Bioactivity validationCompetitive immunoassay validation (Competitive ELISA) with hapten-carrier conjugates and anti-Hapten antibody;
Products descriptionCompetitive immunoassay-validated hapten-carrier conjugates BSA-Cholera toxin with anti-Hapten antibody. The hapten hapten-carrier conjugates BSA-Cholera toxin had been validated with our anti-Hapten antibody Anti-Cholera toxin mouse monoclonal antibody via competitive ELISA test.
ApplicationELISA tests and other immunoassays;
Lateral flow immunoassay (LFIA);
LTIA
Immunonephelometry
Time-resolved Fluorescence Immunoassay (TRFIA)
FormulationLyophilized from sterile PBS, PH 7.4
StorageStore at -20℃ to -80℃ under sterile conditions. Avoid repeated freeze-thaw cycles.


OVA-Cholera toxin

Cat No.GMP-SMT-158-Ag-2
Bioactivity validationCompetitive immunoassay validation (Competitive ELISA) with hapten-carrier conjugates and anti-Hapten antibody;
Products descriptionCompetitive immunoassay-validated hapten-carrier conjugates OVA-Cholera toxin with anti-Hapten antibody. The hapten hapten-carrier conjugates OVA-Cholera toxin had been validated with our anti-Hapten antibody Anti-Cholera toxin mouse monoclonal antibody via competitive ELISA test.
ApplicationELISA tests and other immunoassays;
Lateral flow immunoassay (LFIA);
LTIA
Immunonephelometry
Time-resolved Fluorescence Immunoassay (TRFIA)
FormulationLyophilized from sterile PBS, PH 7.4
StorageStore at -20℃ to -80℃ under sterile conditions. Avoid repeated freeze-thaw cycles.


Anti-Cholera toxin mouse monoclonal antibody

Cat No.GMP-SMT-158-Ab-1
Host of AntibodyMouse IgG
Bioactivity validationCompetitive immunoassay validation (Competitive ELISA) with hapten-carrier conjugates and anti-Hapten antibody;
Lateral flow immunoassay (LFIA);
ELISA IC50 (ppb)0.6-2
Products descriptionThe anti-Hapten antibody against hapten Cholera toxin had been validated with our hapten hapten-carrier conjugates BSA-Cholera toxin via competitive ELISA test.
ApplicationELISA tests and other immunoassays;
Lateral flow immunoassay (LFIA);
LTIA
Immunonephelometry
Time-resolved Fluorescence Immunoassay (TRFIA)
FormulationLyophilized from sterile PBS, PH 7.4
StorageStore at -20℃ to -80℃ under sterile conditions. Avoid repeated freeze-thaw cycles.


Anti-Cholera toxin human monoclonal antibody

Cat No.GMP-SMT-158-Ab-2
Host of AntibodyHuman IgG1
Bioactivity validationCompetitive immunoassay validation (Competitive ELISA) with hapten-carrier conjugates and anti-Hapten antibody;
Lateral flow immunoassay (LFIA);
ELISA IC50 (ppb)0.6-2
Products descriptionThe anti-Hapten antibody against hapten Cholera toxin had been validated with our hapten hapten-carrier conjugates BSA-Cholera toxin via competitive ELISA test.
ApplicationELISA tests and other immunoassays;
Lateral flow immunoassay (LFIA);
LTIA
Immunonephelometry
Time-resolved Fluorescence Immunoassay (TRFIA)
FormulationLyophilized from sterile PBS, PH 7.4
StorageStore at -20℃ to -80℃ under sterile conditions. Avoid repeated freeze-thaw cycles.


Reference




    Data / case study


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    Biomarker Information


    1. Cholera Toxin and Its Significance in Mycotoxin Analysis

    1.1 What is Cholera Toxin, and Its Role in Mycotoxins?

    Cholera toxin stands as a formidable protein complex, synthesized by Vibrio cholerae bacteria. While it is imperative to acknowledge that Cholera toxin itself does not fall under the category of mycotoxins, which are toxic secondary metabolites produced by molds, it plays an instrumental role in mycotoxin analysis, particularly due to the unique properties of its B subunit (CTB).

    1.1.1 Cholera Toxin B Subunit (CTB)

    CTB is a subcomponent of Cholera toxin, responsible for its binding to host cells. It exhibits a distinctive characteristic that makes it highly relevant in mycotoxin research and diagnostics. CTB serves as an exceptional carrier protein for the development of mycotoxin detection assays. This innovation involves the conjugation of CTB with mycotoxins or their analogs, yielding immunogens or hapten-carrier conjugates. These conjugates become the foundation for the creation of highly sensitive and specific immunoassays tailored for the precise identification and quantification of mycotoxins across a spectrum of sample matrices.

    1.2 Why Measure Cholera Toxin?

    1.2.1 Advancements in Mycotoxin Research

    Measuring Cholera toxin, with a specific focus on its B subunit (CTB), offers a myriad of tangible benefits:

    a. Research and Diagnostic Precision: Cholera toxin-based assays have emerged as indispensable tools for mycotoxin detection. By leveraging CTB, researchers and diagnosticians gain access to a platform that allows the development of assays with unparalleled sensitivity and specificity. These assays facilitate the meticulous analysis of mycotoxin levels within diverse sample types.

    b. Sensitivity and Specificity Unleashed: One of the pivotal strengths of Cholera toxin-based assays is their remarkable sensitivity and specificity. These assays are designed to discern even minuscule quantities of mycotoxins, making them invaluable for food safety evaluations and scientific investigations into mycotoxin contamination.

    c. Upholding Food Safety and Quality Standards: Mycotoxins represent a formidable challenge to food safety. Measuring Cholera toxin within mycotoxin assays ensures that food and feed products adhere to stringent regulatory standards. This meticulous scrutiny acts as a bulwark, shielding consumers from potential health hazards associated with mycotoxin exposure.

    d. Agricultural and Environmental Vigilance: Beyond its applications in food and feed, Cholera toxin-based assays find resonance in agricultural and environmental contexts. These assays provide a rapid screening mechanism for crops, feed, and environmental samples, aiding in the timely detection of mycotoxin contamination. This proactive approach contributes significantly to averting mycotoxin-related challenges.

    e. Illuminating Mycotoxin Dynamics: The measurement of Cholera toxin, particularly within mycotoxin research, empowers researchers and stakeholders with profound insights into mycotoxin prevalence, impact, and potential mitigation strategies. This knowledge catalyzes advancements within the field and facilitates the development of innovative solutions to counter mycotoxin-related issues.

    In summation, the measurement of Cholera toxin, with a special emphasis on its B subunit (CTB), assumes paramount importance in the realm of mycotoxin analysis. It empowers stakeholders across various domains to champion food safety, uphold quality control standards, and propel scientific progress in the domain of mycotoxin research. Ultimately, this endeavor safeguards human and animal health while elevating the overall quality of food and feed products, underscoring the pivotal role of Cholera toxin in the modern landscape of analytical sciences and food safety initiatives.



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