APC conjugated Antibodies

APC conjugated Antibodies

As zebrafish (Danio rerio) continue to revolutionize biomedical research, the development of APC conjugated Antizebrafish antibodies marks a significant step forward. These fluorescence-based tools are designed to enhance the precision of protein detection and localization in zebrafish models, offering researchers a robust solution for studying complex biological systems. By combining the specificity of Antizebrafish antibodies with the superior fluorescence properties of APC, this innovative conjugate enables high-sensitivity applications across various fields of molecular biology. Zebrafish have emerged as a vital model organism due to their genetic similarity to humans, rapid development, and transparent embryos, making APC-conjugated Antizebrafish antibodies ideal for studies in developmental biology, neurobiology, immunology, and cancer research. 

The use of APC-conjugated antibodies has expanded the horizons of zebrafish research by enabling real-time visualization of dynamic cellular events. For example:

  • Neurobiology: Researchers have utilized these tools to study neural development by targeting synaptic proteins and neural receptors.
  • Immunology: APC-conjugated antibodies against Toll-like receptors (TLRs) and cytokines like IL-1β have been pivotal in understanding immune responses in zebrafish models.
  • Drug Discovery: These conjugates facilitate high-throughput screening of drug candidates by quantifying target protein modulation in zebrafish systems.

Key Applications of APC Conjugated Antizebrafish

  • Flow Cytometry: APC's bright red fluorescence is highly compatible with flow cytometry platforms, allowing for the precise quantification of protein expression in zebrafish cells.
  • Fluorescence Microscopy: The conjugate's strong signal-to-noise ratio facilitates detailed imaging of protein localization within zebrafish embryos and tissues.
  • Immunophenotyping: APC-conjugated antibodies are instrumental in characterizing immune cell populations in zebrafish models, aiding studies on immune responses and disease mechanisms.
  • Cancer Research: These tools enable the detection of tumor markers in zebrafish xenograft models, providing insights into tumor progression and therapeutic efficacy.

Advantages of APC Conjugated Antizebrafish

  • Enhanced Sensitivity: The high fluorescence intensity of APC ensures the detection of low-abundance proteins with exceptional clarity.
  • Multiplexing Capabilities: APC's distinct emission spectrum allows researchers to simultaneously analyze multiple biomarkers without spectral overlap.
  • Versatility Across Platforms: These conjugates are compatible with various imaging and analytical techniques, including confocal microscopy and flow cytometry.
  • Optimized for Zebrafish Models: Designed specifically for zebrafish research, these antibodies ensure reliable results even in challenging experimental conditions.

APC-conjugated Antizebrafish antibodies represent a transformative advancement in zebrafish research tools. Their combination of high sensitivity, specificity, and versatility makes them indispensable for studies ranging from developmental biology to disease modeling. As zebrafish continue to drive breakthroughs in understanding human biology, adopting cutting-edge solutions like APC-conjugated antibodies will undoubtedly accelerate scientific discoveries. Explore our comprehensive range of APC-conjugated Antizebrafish products to elevate your research today!

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RUOCE / IVD
  • APC 628
  • APC-CY5.5 54
  • APC-Cy7 46
  • APC/Cy5.5 25
  • APC/Cy7 25
  • Cy7 12
  • Cy5 7
  • zebrafish 778
  • human 375
  • mouse 352
  • rat 313
  • dog 82
  • rabbit 60
  • cow 43
  • chicken 34
  • sheep 26
  • pig 25
  • horse 19
  • monkey 17
  • hamster 14
  • cat 13
  • drosophila 8
  • fish 5
  • guinea pig 5
  • xenopus 5
  • c. elegans 4
  • goat 2
  • all species 1
  • plant 1
  • rabbit 664
  • mouse 113
  • Primary antibody 778
  • WB 554
  • IHC 220
  • IF 149
  • FC 125
  • ICC 104
  • IP 87
  • FLISA 35
  • ELISA 14
  • ChIP 2
  • Polyclonal 535
  • Monoclonal 45
  • C6 12
  • 6B5 6
  • H1 6
  • 10F11 3
  • 26C3 3
  • 4C6-H8 3
  • G23F3 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
  • 1183CT6.5.23.6 1
  • 13C4 1
  • 1E8-G6 1
  • 2-7 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
  • J11-A11 1
  • JA30-07 1
  • JF0952 1
  • JF10-11 1
  • JF1021 1
  • JF47-01 1
  • JF53-10 1
  • JJ0949 1
  • JM10-61 1
  • JM10-83 1
  • JM10-90 1
  • JM102-06 1
  • JM11-12 1
  • JM11-15 1
  • JM51-10 1
  • JM54-19 1
  • JM63-53 1
  • JM74-10 1
  • JM93-12 1
  • JU03-26 1
  • JU11-31 1
  • JU30-23 1
  • JU30-49 1
  • RB20813 1
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