Imidacloprid(ICP) antibody/antigen (BSA/OVA/KLH conjugated hapten)

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

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Product information

Catalog No.DescriptionUS $ Price (per mg)
GMP-SMT-93-11. BSA-Imidacloprid(ICP)
2. Anti-Imidacloprid(ICP) mouse monoclonal antibody
$2709.00
GMP-SMT-93-21. OVA-Imidacloprid(ICP)
2. Anti-Imidacloprid(ICP) mouse monoclonal antibody
$2709.00
GMP-SMT-93-31. BSA-Imidacloprid(ICP)
2. Anti-Imidacloprid(ICP) human monoclonal antibody
$2709.00
GMP-SMT-93-41. OVA-Imidacloprid(ICP)
2. Anti-Imidacloprid(ICP) human monoclonal antibody
$2709.00
GMP-SMT-93-Ag-1BSA-Imidacloprid(ICP)$756.00
GMP-SMT-93-Ag-2OVA-Imidacloprid(ICP)$756.00
GMP-SMT-93-Ab-1Anti-Imidacloprid(ICP) mouse monoclonal antibody$1953.00
GMP-SMT-93-Ab-2Anti-Imidacloprid(ICP) human monoclonal antibody$1953.00

Size: 1mg | 10mg | 100mg



Product Description


BSA-Imidacloprid(ICP)

Cat No.GMP-SMT-93-Ag-1
Bioactivity validationCompetitive immunoassay validation (Competitive ELISA) with hapten-carrier conjugates and anti-Hapten antibody;
Products descriptionCompetitive immunoassay-validated hapten-carrier conjugates BSA-Imidacloprid(ICP) with anti-Hapten antibody. The hapten hapten-carrier conjugates BSA-Imidacloprid(ICP) had been validated with our anti-Hapten antibody Anti-Imidacloprid(ICP) 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-Imidacloprid(ICP)

Cat No.GMP-SMT-93-Ag-2
Bioactivity validationCompetitive immunoassay validation (Competitive ELISA) with hapten-carrier conjugates and anti-Hapten antibody;
Products descriptionCompetitive immunoassay-validated hapten-carrier conjugates OVA-Imidacloprid(ICP) with anti-Hapten antibody. The hapten hapten-carrier conjugates OVA-Imidacloprid(ICP) had been validated with our anti-Hapten antibody Anti-Imidacloprid(ICP) 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-Imidacloprid(ICP) mouse monoclonal antibody

Cat No.GMP-SMT-93-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)0.2-0.3
Products descriptionThe anti-Hapten antibody against hapten Imidacloprid(ICP) had been validated with our hapten hapten-carrier conjugates BSA-Imidacloprid(ICP) 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-Imidacloprid(ICP) human monoclonal antibody

Cat No.GMP-SMT-93-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)0.2-0.3
Products descriptionThe anti-Hapten antibody against hapten Imidacloprid(ICP) had been validated with our hapten hapten-carrier conjugates BSA-Imidacloprid(ICP) 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. Imidacloprid (ICP): Imidacloprid, commonly referred to as ICP, represents a prominent member of the neonicotinoid class of insecticides. These chemicals have earned recognition and widespread adoption in the field of pest management due to their remarkable efficacy and targeted mode of action. Specifically, ICP is celebrated for its exceptional performance in combatting a diverse spectrum of injurious insect pests that afflict various agricultural crops. This compound's significance in the domain of pesticides is underscored by its ability to address a range of economically damaging insects, including aphids, thrips, whiteflies, and more.

    Mechanism of Action:

    Imidacloprid's potency as a pesticide arises from its highly selective mechanism of action. This insecticide operates by disrupting the central nervous system of insects, a process that is neurologically distinctive. Upon exposure to ICP, insect pests experience interference with their neural pathways, resulting in a series of physiological consequences. Ultimately, this neurological disruption leads to paralysis, incapacitation, and, ultimately, the demise of the targeted insect pests.

    Importance of Quantifying Imidacloprid (ICP):

    1. Residue Monitoring:

    The quantification of Imidacloprid residues on agricultural crops is paramount. It serves as a critical component of pesticide management strategies and ensures adherence to established safety thresholds. Regular and precise assessment of Imidacloprid levels on crops enables agricultural stakeholders to confirm that residue concentrations remain within acceptable limits. This practice safeguards the well-being of both consumers and the environment by preventing potential adverse effects resulting from excessive pesticide residues in food products.

    2. Regulatory Compliance:

    Many regulatory authorities and governmental bodies worldwide institute stringent regulations governing pesticide residues in agricultural products. Imidacloprid, as a widely used insecticide, is subject to these regulations. Accurate and comprehensive measurement of Imidacloprid levels in agricultural produce is indispensable for agricultural enterprises and growers to adhere to these stipulations. Failing to comply with regulatory thresholds can result in legal consequences, jeopardizing the reputation and financial stability of agricultural businesses.

    3. Environmental Impact Assessment:

    Beyond its role in ensuring the safety of food products, the quantification of Imidacloprid also plays a vital role in environmental stewardship. Monitoring Imidacloprid levels in soil and water resources serves as a crucial tool for assessing its environmental impact. This proactive approach aims to prevent potential harm to non-target species and mitigate the risk of ecological contamination resulting from the use of this insecticide. Understanding the environmental fate of Imidacloprid is essential for preserving biodiversity and maintaining ecosystem health.

    4. Efficacy Evaluation:

    Accurate measurement of Imidacloprid levels enables growers and agricultural practitioners to evaluate the efficacy of pest control strategies that rely on this insecticide. By quantifying the presence of Imidacloprid in treated crops, stakeholders can assess the effectiveness of their pest management practices. This assessment is essential for optimizing pest control while minimizing overall pesticide application, reducing production costs, and mitigating potential environmental impacts.

    5. Consumer Welfare:

    Perhaps most critically, quantifying Imidacloprid levels in consumable agricultural produce is paramount for safeguarding public health. Consumers rely on the safety and quality of the food they consume. Ensuring that Imidacloprid residues in food products are well below established safety thresholds is crucial for maintaining public trust in the safety of agricultural products. Imidacloprid quantification is a vital component of the comprehensive approach to food safety, consumer protection, and the preservation of public health.

    In conclusion, Imidacloprid (ICP) stands as a cornerstone of modern pest management practices. Its potent mechanism of action and effectiveness in controlling a wide range of insect pests have established it as a valuable tool in agriculture. The meticulous quantification of Imidacloprid levels is pivotal, encompassing multiple facets, including regulatory adherence, environmental protection, efficacy assessment, and public health assurance. Its significance extends to scientific, regulatory, and agricultural communities, reinforcing its pivotal role in safeguarding both crop yields and consumer well-being.



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