FITC conjugated Antibodies

FITC conjugated Antibodies

FITC-conjugated anti-zebrafish primary antibodies are essential tools for researchers looking to explore the fascinating world of zebrafish biology. With their bright fluorescence and versatility, FITC-conjugated antibodies are perfect for applications such as immunohistochemistry, flow cytometry, and live cell imaging.  

Research utilizing FITC-conjugated anti-zebrafish primary antibodies has yielded significant insights into various biological processes:

  • Character
  • ization of γδ T Cells: A study characterized γδ T cells in zebrafish using FITC-conjugated antibodies to identify surface markers like CD4 and CD8. The findings revealed that these cells play a critical role in both innate and adaptive immunity by acting as antigen-presenting cells (APCs) and facilitating IgM production in response to antigens. This research not only enhances our understanding of immune system evolution but also positions zebrafish as a model organism for studying T cell biology across species.
  • Investigation of Hemostasis: Another impactful study employed FITC-conjugated antibodies to examine the role of von Willebrand Factor (vWF) in zebrafish hemostasis. By utilizing these antibodies in immunostaining protocols, researchers were able to visualize vWF localization in blood vessels and assess its functional contributions to blood clotting mechanisms. This work underscores the utility of zebrafish as a model for studying vascular biology and coagulation disorders.
  • Developmental Biology Insights: In developmental biology studies, researchers have used FITC-conjugated antibodies to explore protein expression patterns during embryonic development. For example, the localization of various morphogens was analyzed using these antibodies, providing critical insights into the signaling pathways that govern organogenesis and tissue differentiation in zebrafish embryos.

Key Applications

  • Immunohistochemistry (IHC): Utilize these FITC-conjugated anti-zebrafish primary antibodies for precise localization of proteins in zebrafish tissue sections. For instance, researchers have successfully used these antibodies to visualize neuronal markers, providing insights into neurodevelopmental processes.
  • Flow Cytometry: Analyze immune cell populations in zebrafish models with these FITC-conjugated antibodies. The ability to use multiple fluorescent markers allows for comprehensive profiling of cell types, essential for studies on immune responses and developmental biology.
  • Live Cell Imaging: These antibodies are suitable for live cell imaging applications, enabling real-time observation of protein dynamics within living zebrafish embryos. This capability is crucial for understanding cellular processes such as migration and signaling pathways during development.

Why Choose FITC-Conjugated Antibodies?

  • Superior Brightness and Sensitivity: FITC-conjugated anti-zebrafish primary antibodies offer exceptional brightness due to the high quantum yield of fluorescein isothiocyanate. This ensures that even low-abundance proteins can be detected with high sensitivity, making them ideal for studies involving early developmental stages or rare cell populations.
  • Flexibility in Experimental Design: FITC-conjugated antibodies provide the flexibility to choose your detection methods. Whether you’re performing immunohistochemistry or flow cytometry, these antibodies can be easily integrated into your protocols. Additionally, they can be used in multiplex assays alongside other fluorophores, allowing you to study multiple targets simultaneously.
  • Established Protocols for Zebrafish Research: FITC-conjugated antibodies come with well-established protocols tailored specifically for zebrafish tissues. This ensures that you can achieve optimal results with minimal troubleshooting. 

FITC-conjugated anti-zebrafish primary antibodies are indispensable tools for researchers aiming to uncover the complexities of zebrafish biology. With their superior sensitivity, flexibility in experimental design, and established protocols, these antibodies can significantly enhance your research outcomes. Browse a selection today and elevate your studies with high-quality reagents tailored for zebrafish research! 

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