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Recombinant Proteins
Immunoglobulins
Immunoglobulins, commonly known as antibodies, are specialized proteins produced by the immune system to recognize and neutralize foreign invaders such as bacteria, viruses, and toxins. As key components in immunity, immunoglobulins are widely used in research, diagnostics, and therapeutic applications. Whether you're studying immune responses, developing diagnostic assays, or creating antibody-based therapies, immunoglobulins provide reliable, versatile, and powerful solutions to support your work.
Category Highlights:
What Are Immunoglobulins?
Immunoglobulins are Y-shaped glycoproteins produced by B cells that play a critical role in the adaptive immune system. They recognize specific antigens and facilitate their removal by binding to them with high specificity. There are five main classes of immunoglobulins (IgG, IgA, IgM, IgE, IgD), each with unique properties and functions. Immunoglobulins are indispensable in biomedical research, clinical diagnostics, and therapeutic applications due to their specificity, versatility, and biological activity.
Why Choose Immunoglobulins?
1-High Specificity
Immunoglobulins bind to specific antigens with high affinity, making them ideal for targeted research, diagnostics, and therapy.
2-Versatile Applications
Immunoglobulins are widely used in techniques such as ELISA, Western blotting, immunohistochemistry, and flow cytometry.
3-Multiple Formats
Available as monoclonal, polyclonal, or recombinant antibodies, tailored to meet diverse research and clinical needs.
4-Functional Flexibility
Immunoglobulins can be engineered for specialized applications, including antibody-drug conjugates (ADCs) or bispecific antibodies.
5-Trusted and Reliable
Produced under stringent quality control processes to ensure consistency, reliability, and reproducibility.
Applications of Immunoglobulins
- Biomedical Research:
Study immune responses, antigen-antibody interactions, and signaling pathways using immunoglobulins in research assays.
- Diagnostics:
Use immunoglobulins as primary or secondary antibodies in diagnostic assays like ELISA, lateral flow tests, or immunofluorescence.
- Therapeutics:
Develop antibody-based treatments for autoimmune diseases, cancers, and infectious diseases.
- Vaccine Development:
Assess immune responses by measuring antibody levels post-vaccination.
- Immunology Studies:
Investigate immunoglobulin classes and subclasses to understand immune system functionality and disorders.
- Passive Immunotherapy:
Use purified immunoglobulins for immediate protection against specific pathogens in immunocompromised patients.
Key Features of Immunoglobulins
1-High Affinity:
Designed to bind specific antigens with precision, ensuring accurate detection and targeting.
2-Purity and Quality:
Produced with high levels of purity and validated for activity, ensuring reliable performance.
3-Multiple Isotypes:
Available as IgG, IgA, IgM, IgE, and IgD, depending on the required application and research focus.
4-Customizable Formats:
Engineered options include conjugated antibodies (e.g., with enzymes or fluorophores) for enhanced versatility.
5-Broad Compatibility:
Suitable for various experimental techniques, including ELISA, Western blotting, flow cytometry, and immunoprecipitation.
Immunoglobulin Classes and Their Functions
- IgG:
The most abundant immunoglobulin in blood and extracellular fluid, critical for long-term immunity and opsonization.
- IgA:
Found in mucosal areas, such as the respiratory and gastrointestinal tracts, providing immune protection at mucosal surfaces.
- IgM:
The first immunoglobulin produced during an immune response, playing a key role in initial antigen neutralization.
- IgE:
Involved in allergic reactions and immune defense against parasitic infections.
- IgD:
Primarily found on the surface of immature B cells, playing a role in initiating B cell activation.
Advantages of Using Immunoglobulins
- Unparalleled Specificity:
High precision in targeting antigens ensures reliable and reproducible results.
- Versatile Applications:
Suitable for diagnostics, research, and therapeutic development across various fields.
- Customizable Formats:
Tailor immunoglobulins to meet specific needs, including conjugation to enzymes, fluorophores, or drugs.
- Broad Isotype Selection:
Choose the appropriate immunoglobulin class or subclass based on your research or application requirements.
- Cost-Effective:
Available in ready-to-use formats, saving time and resources while ensuring quality.
Best Practices for Using Immunoglobulins
1-Storage:
Store immunoglobulins at the recommended temperature (typically -20°C or 4°C) to maintain stability and activity.
2-Dilution Optimization:
Use the appropriate dilution factor to achieve optimal results for your specific assay or application.
3-Prevent Contamination:
Handle immunoglobulins with care to avoid contamination or degradation.
4-Validate Specificity:
Test antibodies in your experimental setup to ensure specificity and minimize background noise.
5-Follow Protocols Closely:
Adhere to experimental protocols for consistent and reliable results.
Why Choose Immunoglobulins for Your Research or Diagnostics?
Immunoglobulins are the backbone of immunological research and clinical diagnostics. Their exceptional specificity, versatility, and ability to target antigens make them indispensable for a wide range of applications. Whether you're conducting basic research, developing diagnostic tools, or creating innovative therapies, immunoglobulins deliver the precision and reliability needed to achieve your goals.
Order Immunoglobulins Today
Explore our comprehensive selection of immunoglobulins designed for research, diagnostics, and therapeutic applications. Each product is rigorously tested for quality and performance to ensure consistent and reliable results. Place your order today and elevate your research or diagnostics with our high-quality immunoglobulins.
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Filters
- (349395)
Host
- (93609)
Isotype
- (142558)
Label
- (305181)
Pathogen
- (1700420)
Species
- (2822980)
Technique
- (1329571)
Tissue