NovaFluor™ Antikörper-Konjugationskits
NovaFluor™ Antikörper-Konjugationskits
NovaFluor™ Antikörper-Konjugationskits
NovaFluor™ Antikörper-Konjugationskits
Invitrogen™

NovaFluor™ Antikörper-Konjugationskits

Holen Sie das Beste aus Ihrem Panel-Design heraus, indem Sie Antikörper gegen konjugieren NovaFluor Farbstoffe, die speziell für die spektrale Hygiene entwickelt wurden, um schmale Emmissionsspektren und minimale Kreuzlaseranregung zu aufweisen.
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KatalognummerMarker oder FarbstoffProdukttypEmissionMenge
K06T04L019NovaFluor Rot 700Konjugationskit700 nm100 μg
K06T04L008NovaFluor Blau 510Konjugationskit510 nm100 μg
K06T04L002NovaFluor Blau 530Konjugationskit530 nm100 μg
K06T04L009NovaFluor Blau 555Konjugationskit555 nm100 μg
K06T04L010NovaFluor Blau 585Konjugationskit585 nm100 μg
K06T04L003NovaFluor Blau 610-30SKonjugationskit610 nm100 μg
K06T04L011NovaFluor Blau 610-70SKonjugationskit610 nm100 μg
K06T04L004NovaFluor Blau 660-40SKonjugationskit660 nm100 μg
K06T04L021NovaFluor Blau 690Konjugationskit690 nm100 μg
K06T04L012NovaFluor Blau 660-120SKonjugationskit660 nm100 μg
K06T04L026NovaFluor™ Blau 760Konjugationskit760 nm100 μg
K06T04L017NovaFluor Rot 660Konjugationskit660 nm100 μg
K06T04L018NovaFluor Rot 685Konjugationskit685 nm100 μg
K06T04L020NovaFluor Rot 710Konjugationskit710 m100 μg
K06T04L023NovaFluor Rot 725Konjugationskit725 m100 μg
K06T04L024NovaFluor Rot 755Konjugationskit755 nm100 μg
K06T04L005NovaFluor Gelb 570Konjugationskit570 nm100 μg
K06T04L013NovaFluor Gelb 590Konjugationskit590 nm100 μg
K06T04L006NovaFluor Gelb 610Konjugationskit610 nm100 μg
K06T04L007NovaFluor Gelb 660Konjugationskit660 nm100 μg
K06T04L014NovaFluor Gelb 690Konjugationskit690 nm100 μg
K06T04L015NovaFluor Gelb 700Konjugationskit700 nm100 μg
K06T04L016NovaFluor Gelb 730Konjugationskit730 nm100 μg
K06T04L022NovaFluor Gelb 755Konjugationskit755 nm100 μg
K06T04L027NovaFluor™ UV 765Konjugationskit765 nm100 μg
K06T04L028NovaFluor™ Violett 800Konjugationskit800 nm100 μg
K06T04L029NovaFluor™ Violett 745Konjugationskit745 nm100 μg
K06T04L030NovaFluor™ Gelb 810Konjugationskit810 nm100 μg
K06T04L031NovaFluor™ Blau 725Konjugationskit725 m100 μg
K06T04L032NovaFluor™ Violett 690Konjugationskit690 nm100 μg
K06T04L033NovaFluor™ Blau 800Konjugationskit800 nm100 μg
K06T04L034NovaFluor™ Blau 745Konjugationskit748100 μg
K06T04L035NovaFluor™ Rot 800Konjugationskit799100 μg
Katalognummer K06T04L019
Preis (EUR)
490,00
Each
Zum Warenkorb hinzufügen
Marker oder Farbstoff:
NovaFluor Rot 700
Produkttyp:
Konjugationskit
Emission:
700 nm
Menge:
100 μg
Preis (EUR)
490,00
Each
Zum Warenkorb hinzufügen
NovaFluor Conjugation Kits provide a simple workflow to conjugate a blue, yellow-green or red excitable fluorophore to your antibody of choice in just 3 easy steps. The fluorescence-by-design Phiton platform enables the addition of parameters to your current panels in discovery research and resolves stained populations with near-zero cross excitation, with a lack of emission in the violet channels that plague other fluorophores.

NovaFluor Das Konjugationskit umfasst folgende Funktionen:

  • Eine saubere und helle Antikörperbewertung zur Erhöhung der Anzahl der Parameter auf konventionellen und spektralen Durchflusszytometern
  • Auflösen von Populationen mit begrenzter/fast null Kreuzanregung und der niedrigsten Spreizungsleistung aller blauen, gelb-grünen oder rot angeregten Fluoreszenzmarker
  • Einfaches 3-Stufen-Protokoll mit 60 Sekunden praktischer Zeit zum Konjugieren 10 – 100 μg Antikörper pro Markierung
  • Bis zu 70 % weniger Anregung im Vergleich zu PE-Tandems, was zu einem geringeren Spillover und einer höheren Auflösung führt

3-Stufen-Konjugationsmethode

  • Beifügen NovaFluor Linker zum Antikörper der Wahl
  • Überschuss entfernen NovaFluor Linker vom DNA-konjugierten Antikörper
  • Möglich machen NovaFluor gegenüber oligo-konjugierten Antikörpern
Nur für Forschungszwecke. Darf nicht für diagnostische Verfahren eingesetzt werden.
Specifications
Emission700 nm
Zur Verwendung mit (Anwendung)Durchflusszytometrie
Marker oder FarbstoffNovaFluor Rot 700
ProdukttypKonjugationskit
Menge100 μg
ProduktlinieNovaFluor
Unit SizeEach

Häufig gestellte Fragen (FAQ)

What is the NovaFluor dye structure and how does this impact the NovaFluor antibody conjugation workflow?

NovaFluor dyes are based on Phiton technology utilizing novel nucleic acid dye structures. The dyes work with FRET technology and have a clear benefit versus tandem dyes, as the structures are extremely stable. More information can be found on our NovaFluor website.

Due to the nucleotide structure, some adherence of the NovaFluor dyes to dead cells is expected. Good viability of the sample and inclusion of a fixable viability stain is recommended. Using nucleotide-staining viability dyes such as DAPI, PI, and 7-AAD dyes is not recommended.

Find additional tips, troubleshooting help, and resources within our Cell Analysis Support Center.

Can I use NovaFluor antibody conjugation kits for conjugation of antibodies targeting intracellular epitopes?

NovaFluor antibody conjugation kits can be used for conjugation of antibodies targeting intracellular epitopes. The labeling needs to be performed with 10 µL CellBlox Plus Blocking Buffer (Cat. No. C001T02F01, C001T03F01, C001T06F01) to block non-specific binding of NovaFluor labels with cells, after fixation and permeabilization.

If NovaFluor dyes are used for surface targets as well as intracellular targets, first add 5 µL CellBlox Plus Blocking Buffer during staining with the surface markers. Then, after completing the staining, washing, fixation, and permeabilization, add 10 µL CellBlox Plus Blocking Buffer again to block non-specific intracellular binding while labeling with the NovaFluor conjugates for intracellular targets.

Find additional tips, troubleshooting help, and resources within our Cell Analysis Support Center.

Can I label my antibody with more than one NovaFluor label if I purchased more than one NovaFluor conjugation kit?

Yes, you can. After performing the steps on Days 1 and 2, your Antibody-NovaFluor Linker conjugate can be attached to the NovaFluor label at whatever volume you like, as long as the ratio of the Antibody-NovaFluor Linker to the NovaFluor label is kept constant.

Example: If you purchased two NovaFluor conjugation kits, one with NovaFluor Blue 610-30S and one with NovaFluor Yellow 610, use the contents of both kits to modify your two antibodies of interest (both 100 µg), completing all steps outlined for Days 1 and 2 with no modification. After resuspending your antibodies into PBS and after the second round of ammonium sulfate precipitation, you should have 100 µL of each Antibody-NovaFluor Linker conjugate. You can now divide the antibody solutions in half (50 µL each) and add half of each NovaFluor label to the divided antibody solutions (150 µL of NovaFluor label to each 50 µL of Antibody-NovaFluor Linker), giving you 200 µL total of each antibody conjugated to both NovaFluor Blue 610-30S and NovaFluor Yellow 610. After mixing, continue with the protocol and incubate overnight at 4 degrees C.

Find additional tips, troubleshooting help, and resources within our Cell Analysis Support Center.

How should I store NovaFluor-antibody conjugates?

We recommend storing new NovaFluor-antibody conjugates at 2-8 degrees C, protected from light. If desired, NovaFluor-antibody conjugates can be stored with 0.09% sodium azide. DO NOT store NovaFluor-antibody conjugates at -80 degrees C or -20 degrees C.

Find additional tips, troubleshooting help, and resources within our Cell Analysis Support Center.

For the NovaFluor conjugation kits, in Step 16 of the procedure, can you provide more information about how I should orient my tube and describe the appearance of the pellet following precipitation?

We have included Figure 4 in the manual (https://assets.thermofisher.com/TFS-Assets/LSG/manuals/MAN0025061_NovaFluorConjugationKit_UG.pdf) to show how the pellet appears following the precipitation step. Although the microcentrifuge tube can be centrifuged in any orientation, we recommend orienting it in the same direction for both centrifugation steps so that your pellet is in the same place (Figure 3). The pellet is often smaller after the second precipitation, so it is helpful to know where to expect it.

Find additional tips, troubleshooting help, and resources within our Cell Analysis Support Center.