Carbendazim(CBD) antibody/antigen (BSA/OVA/KLH conjugated hapten)
anti-Carbendazim(CBD) antibody and Carrier-coupled antigen/immunogen (hapten-carrier conjugates)
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Product information
Catalog No. | Description | US $ Price (per mg) |
---|---|---|
GMP-SMT-94-1 | 1. BSA-Carbendazim(CBD) 2. Anti-Carbendazim(CBD) mouse monoclonal antibody | $2709.00 |
GMP-SMT-94-2 | 1. OVA-Carbendazim(CBD) 2. Anti-Carbendazim(CBD) mouse monoclonal antibody | $2709.00 |
GMP-SMT-94-3 | 1. BSA-Carbendazim(CBD) 2. Anti-Carbendazim(CBD) human monoclonal antibody | $2709.00 |
GMP-SMT-94-4 | 1. OVA-Carbendazim(CBD) 2. Anti-Carbendazim(CBD) human monoclonal antibody | $2709.00 |
GMP-SMT-94-Ag-1 | BSA-Carbendazim(CBD) | $756.00 |
GMP-SMT-94-Ag-2 | OVA-Carbendazim(CBD) | $756.00 |
GMP-SMT-94-Ab-1 | Anti-Carbendazim(CBD) mouse monoclonal antibody | $1953.00 |
GMP-SMT-94-Ab-2 | Anti-Carbendazim(CBD) human monoclonal antibody | $1953.00 |
Size: 1mg | 10mg | 100mg
Product Description
BSA-Carbendazim(CBD)
Cat No. | GMP-SMT-94-Ag-1 |
Bioactivity validation | Competitive immunoassay validation (Competitive ELISA) with hapten-carrier conjugates and anti-Hapten antibody; |
Products description | Competitive immunoassay-validated hapten-carrier conjugates BSA-Carbendazim(CBD) with anti-Hapten antibody. The hapten hapten-carrier conjugates BSA-Carbendazim(CBD) had been validated with our anti-Hapten antibody Anti-Carbendazim(CBD) mouse monoclonal antibody via competitive ELISA test. |
Application | ELISA tests and other immunoassays; Lateral flow immunoassay (LFIA); LTIA Immunonephelometry Time-resolved Fluorescence Immunoassay (TRFIA) |
Formulation | Lyophilized from sterile PBS, PH 7.4 |
Storage | Store at -20℃ to -80℃ under sterile conditions. Avoid repeated freeze-thaw cycles. |
OVA-Carbendazim(CBD)
Cat No. | GMP-SMT-94-Ag-2 |
Bioactivity validation | Competitive immunoassay validation (Competitive ELISA) with hapten-carrier conjugates and anti-Hapten antibody; |
Products description | Competitive immunoassay-validated hapten-carrier conjugates OVA-Carbendazim(CBD) with anti-Hapten antibody. The hapten hapten-carrier conjugates OVA-Carbendazim(CBD) had been validated with our anti-Hapten antibody Anti-Carbendazim(CBD) mouse monoclonal antibody via competitive ELISA test. |
Application | ELISA tests and other immunoassays; Lateral flow immunoassay (LFIA); LTIA Immunonephelometry Time-resolved Fluorescence Immunoassay (TRFIA) |
Formulation | Lyophilized from sterile PBS, PH 7.4 |
Storage | Store at -20℃ to -80℃ under sterile conditions. Avoid repeated freeze-thaw cycles. |
Anti-Carbendazim(CBD) mouse monoclonal antibody
Cat No. | GMP-SMT-94-Ab-1 |
Host of Antibody | Mouse IgG |
Bioactivity validation | Competitive immunoassay validation (Competitive ELISA) with hapten-carrier conjugates and anti-Hapten antibody; Lateral flow immunoassay (LFIA); |
ELISA IC50 (ppb) | 1.00 |
Products description | The anti-Hapten antibody against hapten Carbendazim(CBD) had been validated with our hapten hapten-carrier conjugates BSA-Carbendazim(CBD) via competitive ELISA test. |
Application | ELISA tests and other immunoassays; Lateral flow immunoassay (LFIA); LTIA Immunonephelometry Time-resolved Fluorescence Immunoassay (TRFIA) |
Formulation | Lyophilized from sterile PBS, PH 7.4 |
Storage | Store at -20℃ to -80℃ under sterile conditions. Avoid repeated freeze-thaw cycles. |
Anti-Carbendazim(CBD) human monoclonal antibody
Cat No. | GMP-SMT-94-Ab-2 |
Host of Antibody | Human IgG1 |
Bioactivity validation | Competitive immunoassay validation (Competitive ELISA) with hapten-carrier conjugates and anti-Hapten antibody; Lateral flow immunoassay (LFIA); |
ELISA IC50 (ppb) | 1.00 |
Products description | The anti-Hapten antibody against hapten Carbendazim(CBD) had been validated with our hapten hapten-carrier conjugates BSA-Carbendazim(CBD) via competitive ELISA test. |
Application | ELISA tests and other immunoassays; Lateral flow immunoassay (LFIA); LTIA Immunonephelometry Time-resolved Fluorescence Immunoassay (TRFIA) |
Formulation | Lyophilized from sterile PBS, PH 7.4 |
Storage | Store 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
Carbendazim (CBD): A Benzimidazole Fungicide
Carbendazim (CBD) (Serial Number 1) is a chemical compound that falls under the category of benzimidazole fungicides, serving as a fundamental component in contemporary agriculture. Its prominence in the agricultural sector is attributed to its remarkable efficacy in combatting a wide spectrum of plant diseases caused by fungal pathogens.
Chemically, CBD is characterized by its benzimidazole core structure, which endows it with potent antifungal properties. Within the agricultural context, CBD is primarily employed to safeguard crops against fungal infections that can severely compromise crop yields and quality.
CBD's mode of action is rooted in its ability to disrupt key cellular processes in fungal organisms. Specifically, it targets microtubule assembly within fungal cells, disrupting critical functions such as mitosis and cell division. This disruption ultimately leads to the suppression of fungal growth and reproduction, making CBD a vital tool in modern pest and disease management strategies.
The Significance of Measuring Carbendazim (CBD) (Serial Number 2)
Accurate and precise measurement of Carbendazim (CBD) is of paramount importance in the agricultural and environmental realms for several compelling reasons:
Pesticide Residue Monitoring: Rigorous and systematic monitoring of CBD levels in agricultural products is a crucial component of food safety and regulatory compliance efforts. Regulatory bodies establish strict limits governing pesticide residues in food, and exceeding these limits can have adverse consequences, including potential health hazards for consumers and non-compliance with food safety regulations.
Optimized Crop Protection: The meticulous measurement of CBD enables farmers to make informed decisions regarding the dosage and timing of pesticide applications. This optimization not only ensures the effective control of fungal diseases but also minimizes the ecological impact of pesticide use. By applying CBD judiciously, farmers can strike a balance between crop protection and environmental sustainability.
Quality Assurance: CBD quantification serves as a cornerstone of quality assurance in the agriculture and food production sectors. By verifying that CBD levels are within acceptable limits, producers can guarantee the safety and integrity of their agricultural products. This, in turn, bolsters consumer trust and ensures compliance with industry standards and regulations.
Environmental Impact Assessment: Beyond agriculture, monitoring CBD concentrations in the environment is instrumental in assessing its potential ramifications on ecosystems. The controlled and responsible management of CBD in the environment is essential for safeguarding ecological balance. Excessive CBD runoff into natural habitats can disrupt aquatic ecosystems and terrestrial environments, necessitating rigorous monitoring and mitigation measures.
Research and Development: In the realm of agricultural research and development, accurate CBD measurement is indispensable for evaluating the effectiveness of new pesticide formulations and pest management strategies. Researchers rely on precise CBD quantification to gauge the impact of these innovations on crop protection, yield enhancement, and environmental sustainability.
In summary, Carbendazim (CBD), a benzimidazole fungicide with potent antifungal properties (Serial Number 1), plays a pivotal role in modern agriculture and environmental management. Its meticulous measurement (Serial Number 2) is crucial for upholding food safety, optimizing crop protection, ensuring product quality, assessing environmental impact, and advancing agricultural research and development. By embracing a scientific approach to CBD measurement, stakeholders in agriculture and environmental conservation can navigate the complex interplay between effective pest management and responsible agricultural practices, ultimately contributing to sustainable and prosperous ecosystems.
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