Brombuterol(BL) antibody/antigen (BSA/OVA/KLH conjugated hapten)

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

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Product information

Catalog No.DescriptionUS $ Price (per mg)
GMP-SMT-135-11. BSA-Brombuterol(BL)
2. Anti-Brombuterol(BL) mouse monoclonal antibody
$2709.00
GMP-SMT-135-21. OVA-Brombuterol(BL)
2. Anti-Brombuterol(BL) mouse monoclonal antibody
$2709.00
GMP-SMT-135-31. BSA-Brombuterol(BL)
2. Anti-Brombuterol(BL) human monoclonal antibody
$2709.00
GMP-SMT-135-41. OVA-Brombuterol(BL)
2. Anti-Brombuterol(BL) human monoclonal antibody
$2709.00
GMP-SMT-135-Ag-1BSA-Brombuterol(BL)$756.00
GMP-SMT-135-Ag-2OVA-Brombuterol(BL)$756.00
GMP-SMT-135-Ab-1Anti-Brombuterol(BL) mouse monoclonal antibody$1953.00
GMP-SMT-135-Ab-2Anti-Brombuterol(BL) human monoclonal antibody$1953.00

Size: 1mg | 10mg | 100mg



Product Description


BSA-Brombuterol(BL)

Cat No.GMP-SMT-135-Ag-1
Bioactivity validationCompetitive immunoassay validation (Competitive ELISA) with hapten-carrier conjugates and anti-Hapten antibody;
Products descriptionCompetitive immunoassay-validated hapten-carrier conjugates BSA-Brombuterol(BL) with anti-Hapten antibody. The hapten hapten-carrier conjugates BSA-Brombuterol(BL) had been validated with our anti-Hapten antibody Anti-Brombuterol(BL) 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-Brombuterol(BL)

Cat No.GMP-SMT-135-Ag-2
Bioactivity validationCompetitive immunoassay validation (Competitive ELISA) with hapten-carrier conjugates and anti-Hapten antibody;
Products descriptionCompetitive immunoassay-validated hapten-carrier conjugates OVA-Brombuterol(BL) with anti-Hapten antibody. The hapten hapten-carrier conjugates OVA-Brombuterol(BL) had been validated with our anti-Hapten antibody Anti-Brombuterol(BL) 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-Brombuterol(BL) mouse monoclonal antibody

Cat No.GMP-SMT-135-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)0.1-0.2
Products descriptionThe anti-Hapten antibody against hapten Brombuterol(BL) had been validated with our hapten hapten-carrier conjugates BSA-Brombuterol(BL) 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-Brombuterol(BL) human monoclonal antibody

Cat No.GMP-SMT-135-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)0.1-0.2
Products descriptionThe anti-Hapten antibody against hapten Brombuterol(BL) had been validated with our hapten hapten-carrier conjugates BSA-Brombuterol(BL) 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


    1. Brombuterol (BL) in Environmental Applications:

    Brombuterol (BL), a small molecule of relevance in environmental science, assumes a multifaceted role as an analytical tool with profound implications for the assessment and understanding of environmental parameters. Its significance lies in its capacity to serve as an indicator of air quality and pollutant levels, making it a valuable asset in environmental research and monitoring. BL plays a pivotal role as a tracer and marker, enabling the detection and quantification of various environmental pollutants, including but not limited to airborne particulate matter, volatile organic compounds (VOCs), and an array of hazardous gases.

    A Comprehensive Analytical Tool:

    In the realm of environmental research and analysis, the precision of measurement is paramount. BL offers a valuable means of attaining this precision, allowing researchers to delve into the intricacies of environmental quality and the sources of contamination. It serves as a versatile and sensitive indicator that can be harnessed in a variety of applications:

    Air Quality Assessment: BL's primary role in environmental science revolves around the assessment of air quality. By quantifying BL concentrations in air samples, researchers can gain insights into the levels of pollutants present in the atmosphere. This data is crucial for evaluating the health of ecosystems and human populations, as well as for identifying pollution sources that may require intervention.

    Dispersion and Transport Studies: BL is an invaluable tool in studies related to the dispersion and transport of pollutants. Its presence in environmental samples allows researchers to track the movement and distribution of contaminants over time. This information is fundamental for understanding how pollutants disperse, accumulate, and impact various regions, aiding in the development of strategies for pollution control and management.

    Environmental Change Monitoring: Over time, environmental conditions can undergo significant changes due to various factors, including human activities. Measuring BL concentrations enables researchers to monitor these changes rigorously. BL serves as an indicator of the impact of industrial emissions, transportation, and other anthropogenic influences on air quality and overall environmental health.

    2. The Imperative of Measuring Brombuterol (BL) in Environmental Inquiry:

    The meticulous measurement of Brombuterol (BL) within the context of environmental science is driven by a set of compelling rationales, each possessing profound implications for our comprehension of environmental integrity, ecological equilibrium, and human well-being.

    Air Quality Assessment and Public Health: BL serves as an indispensable barometer of air pollution. Quantifying BL concentrations in air samples provides critical data for the assessment of air quality. This data is essential not only for understanding environmental conditions but also for safeguarding public health. High levels of pollutants in the atmosphere can lead to a range of health problems, including respiratory issues and cardiovascular diseases.

    Identification of Pollution Sources: One of BL's central roles is in identifying pollution sources. By measuring BL levels in different locations and correlating them with known sources of contamination, researchers can pinpoint areas with elevated pollution levels. This information is vital for implementing targeted interventions and pollution control measures.

    Insights into Pollutant Dispersion: Tracking BL in environmental samples offers insights into the dispersion and movement of pollutants. Researchers can analyze how contaminants disperse over time and space, helping them understand the dynamics of pollution and its impact on ecosystems, wildlife, and human populations.

    Long-Term Environmental Monitoring: BL is instrumental in long-term environmental monitoring, enabling researchers to assess changes in environmental conditions over extended periods. By consistently measuring BL concentrations, scientists can detect trends and patterns related to environmental health and quality, providing a foundation for evidence-based decision-making.

    Policy Formulation and Mitigation Strategies: The data obtained through BL measurements plays a crucial role in policy formulation. Governments and regulatory bodies rely on this information to establish air quality standards and regulations. BL measurements also guide the development of pollution mitigation strategies, helping communities and industries reduce their environmental footprint.

    In conclusion, Brombuterol (BL) stands as a scientific linchpin in environmental research, offering a nuanced and comprehensive view of air quality, pollutant dispersion, and long-term environmental changes. Its role extends beyond being a mere analytical tool; it embodies a critical element in the ongoing quest to protect ecosystems, public health, and the planet's sustainability for future generations.



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