Biotinylated Antibodies

Biotinylated Antibodies

Zebrafish (Danio rerio) have emerged as a pivotal model organism in biomedical research, renowned for their unique biological characteristics and the insights they provide into human diseases. The development of biotinylated antibodies specifically designed for zebrafish models represents a significant advancement in the field. These tools enhance the detection and localization of proteins, enabling researchers to investigate complex biological processes with greater precision. Biotinylated antibodies are antibodies that have been chemically modified to include biotin, a small molecule that can bind to avidin or streptavidin with high affinity. This property allows for versatile applications in various assays, including immunohistochemistry, flow cytometry, and ELISA. The use of biotinylated antibodies provides an amplification strategy, as multiple streptavidin molecules can bind to a single biotin molecule, enhancing signal detection.

Importance of Antizebrafish in Research

Zebrafish are increasingly used in biomedical research due to their suitability for live imaging and genetic studies. Biotinylated antibodies are particularly valuable in zebrafish research because they allow for:

  • Enhanced Sensitivity: Amplified signals make it possible to detect low-abundance proteins.
  • Versatility: Biotinylated antibodies can be applied across various platforms such as immunohistochemistry (IHC), ELISA, and flow cytometry.
  • Multiplexing: Their compatibility with fluorescent or enzymatic labels enables simultaneous detection of multiple targets.

Applications of Biotinylated Antibodies

Biotinylated antibodies have broad applications in various immunological techniques:

  • Immunohistochemistry (IHC): Biotinylated antibodies are used to detect specific proteins in zebrafish tissue sections. For example, they can highlight immune molecules like Toll-like receptors (TLRs) and cytokines such as IL-1β and TNF-α.
  • Flow Cytometry: These antibodies facilitate protein quantification in zebrafish cells by amplifying fluorescence signals.
  • ELISA: Biotinylation enhances the sensitivity of ELISA assays for measuring protein expression levels in zebrafish samples.
  • Developmental Biology: Researchers use biotinylated antibodies to study protein localization during organogenesis and tissue differentiation.

Advantages of Using Biotinylated Antibodies

  • Signal Amplification: The strong biotin-streptavidin interaction allows for significant signal enhancement.
  • Compatibility with Multiple Labels: Biotinylated antibodies can be paired with fluorescent dyes or enzymes like horseradish peroxidase (HRP) for versatile detection options.
  • High Specificity: The precision of biotin-streptavidin binding ensures minimal background noise.
  • Ease of Use: Commercially available biotinylated antibodies come with optimized protocols tailored for zebrafish research.

Biotinylated antibodies represent a transformative advancement in zebrafish research, providing scientists with powerful tools to investigate intricate biological processes with unparalleled precision. As the demand for innovative solutions in molecular biology continues to grow, embracing these cutting-edge reagents will enhance our understanding of human health and disease mechanisms. Explore our extensive range of biotinylated Antizebrafish products today to elevate your research capabilities!

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RUOCE / IVD
  • Biotin 7767
  • zebrafish 7767
  • human 6810
  • mouse 6676
  • rat 6620
  • cow 6123
  • dog 5921
  • horse 5665
  • guinea pig 5593
  • rabbit 5537
  • yeast 776
  • sheep 683
  • goat 600
  • pig 531
  • chicken 242
  • monkey 79
  • hamster 18
  • cat 14
  • xenopus 13
  • drosophila 12
  • c. elegans 4
  • fish 3
  • plant 2
  • all species 1
  • insect 1
  • rabbit 7626
  • mouse 133
  • Primary antibody 7767
  • WB 6856
  • IHC 1426
  • ELISA 738
  • IF 233
  • ICC 172
  • IP 133
  • FC 74
  • ChIP 19
  • Polyclonal 7381
  • Monoclonal 121
  • C6 12
  • polyclonal 8
  • H1 6
  • 10B7 4
  • 4C6-H8 3
  • K8/383 3
  • P/T1 3
  • P/T2 3
  • PAX7/497 3
  • SPM128 3
  • SPM350 3
  • SPM538 3
  • SPM542 3
  • SPM543 3
  • SPM575 3
  • TG86 3
  • TG86+P/T1 3
  • TNF706 3
  • TS1 3
  • 1-B11 2
  • 6B5 2
  • Recombinant 2
  • 10F11 1
  • 10g135(D9E) 1
  • 1183CT6.5.23.6 1
  • 13C4 1
  • 1E8-G6 1
  • 2-7 1
  • 26C3 1
  • 2C4-9G6-9A5 1
  • 4C7-3B1-10G4 1
  • 4G11-C7 1
  • 5-E10 1
  • 60B1220.1 1
  • 6H2-4E6-8G2 1
  • 8F10-G10 1
  • 9E7-3F6-6B5 1
  • A11-B4 1
  • C10-D5 1
  • C9-9 1
  • D10-E7 1
  • D5-C2 1
  • G23F3 1
  • J11-A11 1
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