Ricin antibody/antigen (BSA/OVA/KLH conjugated hapten)

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

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Product information

Catalog No.DescriptionUS $ Price (per mg)
GMP-SMT-155-11. BSA-Ricin
2. Anti-Ricin mouse monoclonal antibody
$2709.00
GMP-SMT-155-21. OVA-Ricin
2. Anti-Ricin mouse monoclonal antibody
$2709.00
GMP-SMT-155-31. BSA-Ricin
2. Anti-Ricin human monoclonal antibody
$2709.00
GMP-SMT-155-41. OVA-Ricin
2. Anti-Ricin human monoclonal antibody
$2709.00
GMP-SMT-155-Ag-1BSA-Ricin$756.00
GMP-SMT-155-Ag-2OVA-Ricin$756.00
GMP-SMT-155-Ab-1Anti-Ricin mouse monoclonal antibody$1953.00
GMP-SMT-155-Ab-2Anti-Ricin human monoclonal antibody$1953.00

Size: 1mg | 10mg | 100mg



Product Description


BSA-Ricin

Cat No.GMP-SMT-155-Ag-1
Bioactivity validationCompetitive immunoassay validation (Competitive ELISA) with hapten-carrier conjugates and anti-Hapten antibody;
Products descriptionCompetitive immunoassay-validated hapten-carrier conjugates BSA-Ricin with anti-Hapten antibody. The hapten hapten-carrier conjugates BSA-Ricin had been validated with our anti-Hapten antibody Anti-Ricin 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-Ricin

Cat No.GMP-SMT-155-Ag-2
Bioactivity validationCompetitive immunoassay validation (Competitive ELISA) with hapten-carrier conjugates and anti-Hapten antibody;
Products descriptionCompetitive immunoassay-validated hapten-carrier conjugates OVA-Ricin with anti-Hapten antibody. The hapten hapten-carrier conjugates OVA-Ricin had been validated with our anti-Hapten antibody Anti-Ricin 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-Ricin mouse monoclonal antibody

Cat No.GMP-SMT-155-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 Ricin had been validated with our hapten hapten-carrier conjugates BSA-Ricin 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-Ricin human monoclonal antibody

Cat No.GMP-SMT-155-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 Ricin had been validated with our hapten hapten-carrier conjugates BSA-Ricin 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




    Validation Data


    Click to get more Data / Case study about the product.



    Biomarker Information


    Ricin Description:

    Ricin is a potent and lethal protein toxin that originates from the seeds of the castor bean plant (Ricinus communis). It belongs to the family of ribosome-inactivating proteins (RIPs). While it is not a mycotoxin itself, Ricin plays a pivotal role in the field of mycotoxin detection and has broader applications in the realm of toxicology and biopharmaceutical research.

    Role in Mycotoxins:

    Ricin, despite not being a mycotoxin producer, is crucial in the context of mycotoxin analysis and detection. Mycotoxins are toxic compounds produced by certain fungi, including Aspergillus and Fusarium species, and are notorious for contaminating agricultural products, posing substantial risks to human and animal health. Ricin is utilized in immunoassays and diagnostic tests specifically designed for the detection of mycotoxins. This is achieved by exploiting Ricin's ability to selectively bind to certain mycotoxin molecules. These binding interactions serve as the foundation for the development of highly sensitive assays that can identify mycotoxins in various agricultural products, thereby ensuring food safety and enabling rigorous quality control measures.

    Reasons to Measure Ricin:

    Accurate measurement of Ricin is indispensable for several compelling reasons, particularly within the domain of biopharmaceuticals and mycotoxin analysis:

    a. Mycotoxin Detection:

    Ricin plays a pivotal role in the development of assays for the precise detection of mycotoxins. These mycotoxins, originating from fungal sources, can infiltrate agricultural commodities, leading to potential health hazards. Rigorous measurement of Ricin is essential to enhance the efficacy and accuracy of mycotoxin detection methods, contributing significantly to food safety and stringent quality control measures in the agricultural sector.

    b. Biological Research and Diagnostics:

    Ricin is frequently employed as an immunogen or immunotoxin in biological research and diagnostic applications. Accurate measurement of Ricin is paramount in these contexts, especially when developing targeted therapies, vaccines, or diagnostic tools that involve Ricin or analogous toxins. Understanding Ricin's precise concentration and purity is essential to achieve desired research outcomes and diagnostic accuracy.

    c. Toxin Security and Safety:

    In laboratory environments where Ricin or related substances are handled, monitoring and measuring Ricin levels are critical for safety and security protocols. Ricin is infamous for its extreme toxicity, and accidental exposure can have severe consequences. Thus, the accurate quantification of Ricin is essential to safeguard laboratory personnel and avert potential harm.

    d. Pharmaceutical Quality Assurance:

    Within the pharmaceutical industry, the precise measurement of Ricin assumes paramount importance in ensuring the quality and safety of products. Ricin may be incorporated into the production of biopharmaceuticals, necessitating accurate quantification to meet stringent regulatory standards and guarantee product safety. Accurate Ricin measurement supports quality assurance, ensuring the consistency and efficacy of pharmaceutical products.

    e. Environmental Surveillance:

    In specific scenarios, Ricin or related substances may have implications for the environment. Measuring Ricin levels can assist in evaluating potential contamination or exposure risks, thereby contributing to environmental safety and preservation efforts. Understanding the environmental impact of Ricin is essential for responsible environmental management.

    In summary, the meticulous measurement of Ricin holds pivotal significance in diverse domains, including mycotoxin detection, biological research, toxin safety, pharmaceutical quality assurance, and environmental monitoring. Accurate quantification of Ricin levels serves as a linchpin in ensuring safety, efficacy, and compliance across various industries and applications, playing a critical role in protecting human health and environmental well-being.



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    GDU

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