Unconjugated Antibodies

Unconjugated Antibodies

Unconjugated anti-zebrafish primary antibodies play a crucial role in various research applications, including immunohistochemistry (IHC), Western blotting (WB), and fluorescence microscopy. These antibodies, which are not labeled with any fluorescent or enzymatic tags, offer flexibility in experimental design, allowing you to choose their detection methods based on specific needs. 

Applications of Unconjugated Anti-Zebrafish Primary Antibodies

  • Immunohistochemistry and Immunofluorescence: Unconjugated antibodies are widely used in IHC and immunofluorescence assays to detect specific proteins in zebrafish tissues. For instance, the HuC/HuD antibody targets neuronal markers and has been validated for use in IHC on zebrafish sections. The flexibility of using unconjugated antibodies allows you to select appropriate secondary antibodies conjugated to various fluorophores or enzymes, facilitating multiplexing and enhancing signal detection.
  • Western Blotting: In Western blot applications, unconjugated antibodies provide specificity in detecting target proteins from zebrafish lysates. For example, the anti-zebrafish PSD marker antibody has been utilized to identify postsynaptic density proteins in adult zebrafish brains. The ability to choose secondary antibodies with different conjugates allows for optimization of detection sensitivity and specificity based on experimental requirements.
  • Flow Cytometry: Unconjugated antibodies can also be employed in flow cytometry when combined with suitable secondary reagents. This approach enables the analysis of specific cell populations in zebrafish models, particularly in studies involving immune responses or developmental biology.

Advantages of Unconjugated Antibodies

  • Flexibility in Detection Methods: One of the primary advantages of unconjugated antibodies is the flexibility they provide for detection methods. You can choose secondary antibodies with various conjugates (fluorophores, enzymes) based on the specific requirements of their experiments.
  • Customization: Unconjugated antibodies allow for customization of experimental setups, enabling you to optimize conditions for specific applications such as IHC or WB. This adaptability is particularly useful when working with different tissues or developmental stages in zebrafish.
  • Reduced Background Signal: Using unconjugated primary antibodies can sometimes lead to reduced background signals compared to directly conjugated antibodies, especially if the secondary antibody is carefully selected and optimized.

Unconjugated anti-zebrafish primary antibodies serve as versatile tools in various research applications, offering you flexibility and customization that are essential for studying complex biological systems in zebrafish models. 

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RUOCE / IVD
  • Unconjugated 45818
  • zebrafish 45818
  • human 40455
  • mouse 38877
  • rat 35527
  • cow 31210
  • dog 27852
  • rabbit 26151
  • horse 25475
  • guinea pig 22969
  • pig 7998
  • chicken 6078
  • sheep 5602
  • yeast 3191
  • goat 2533
  • xenopus 2233
  • monkey 1863
  • hamster 447
  • drosophila 301
  • cat 197
  • gorilla 102
  • fish 65
  • virus 54
  • plant 44
  • swine 39
  • frog 35
  • c. elegans 27
  • e. coli 20
  • insect 13
  • all species 7
  • bird 6
  • bacteria 5
  • lizard 5
  • camel 1
  • opossum 1
  • pigeon 1
  • rabbit 43383
  • mouse 1574
  • goat 547
  • chicken 57
  • rat 31
  • human 28
  • zebrafish 21
  • cow 10
  • monkey 8
  • pig 6
  • sheep 6
  • cat 3
  • dog 3
  • hamster 2
  • guinea pig 1
  • xenopus 1
  • Primary antibody 45818
  • WB 43966
  • IHC 13674
  • ELISA 4997
  • IF 4715
  • ICC 2297
  • IP 1987
  • FC 1223
  • ChIP 218
  • Dot blot 71
  • FLISA 32
  • Microscopy 21
  • Proximity Ligation Assay 9
  • Radioimmunoassay 5
  • EMSA 4
  • Neutralization 3
  • Assay 2
  • Immunoassay 1
  • Multiplex assay 1
  • array 1
  • Polyclonal 42353
  • Monoclonal 719
  • HIST1H3A 92
  • HIST1H3C 89
  • HIST1H3D 89
  • HIST1H3E 89
  • HIST1H3F 89
  • HIST1H3G 89
  • HIST1H3H 89
  • HIST1H3I 89
  • HIST1H3J 89
  • H 72
  • HIST1H3 72
  • polyclonal 71
  • Rho 1D4 32
  • 13C4 27
  • C6 27
  • 1E8-G6 26
  • 123C3.D5 25
  • 4G11-C7 23
  • 60B1220.1 23
  • HIST1H3B 15
  • SMAD2 14
  • 3A4 13
  • PAX7/497 13
  • RCK108 13
  • Recombinant 13
  • 1-G2 12
  • SPM128 12
  • SPM543 12
  • monoclonal 12
  • 6B5 11
  • P/T1 11
  • RV202 11
  • SPM350 11
  • SPM538 11
  • SPM542 11
  • TG86 11
  • 33-32 10
  • 3C5 10
  • 4C6-H8 10
  • A8-6 10
  • RCK103 10
  • RCK105 10
  • SPM575 10
  • 1C7 9
  • TNF706 9
  • 10B7 8
  • 119D5-F1 8
  • 2A3 8
  • A11-D7 8
  • AKT1 8
  • B5 8
  • H1 8
  • P/T2 8
  • R2G 8
  • RGE53 8
  • SGK1 8
  • SPM356 8
  • 22D3 7
  • 2H2 7
  • 4C2 7
  • CREB1 7
  • GSK3B 7
  • HHF35 7
  • HIST1H2BC 7
  • MAPK14 7
  • RB35403 7
  • SMAD3 7
  • rTIMP2/2335 7
  • 1-B11 6
  • 1183CT6.5.23.6 6
  • 2ba6 6
  • 8B12 6
  • DE-K13 6
  • DE-K18 6
  • JU11-31 6
  • LN43 6
  • MARCKS 6
  • PC10 6
  • RKSE60 6
  • 25B6 5
  • 2B11 5
  • 2C4-9G6-9A5 5
  • 3A7 5
  • 6B10 5
  • 8F10-G10 5
  • A11-B4 5
  • CDK2 5
  • CHUK 5
  • FYN 5
  • GSK3A 5
  • IKBKB 5
  • JM51-10 5
  • LL020 5
  • PTEN 5
  • RB41920 5
  • RB42535 5
  • RB46770 5
  • RB47041 5
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