Zenon™ Rabbit IgG Labeling Kits
Zenon™ Rabbit IgG Labeling Kits
Invitrogen™

Zenon™ Rabbit IgG Labeling Kits

Generate antibody (IgG) conjugates for immunocytochemistry (ICC), immunohistochemistry (IHC), flow cytometry, and cell imaging with the Invitrogen Zenon™ Rabbit IgG Labeling Kits.
Have Questions?
Change viewbuttonViewtableView
Catalog NumberQuantityExcitation/EmissionLabel or Dye
Z2530750 Reactions kit590/617 nmAlexa Fluor 594
Z2530250 Reactions kit495/519 nmAlexa Fluor 488
Z25303
also known as Z-25303
50 Reactions kit531/554 nmAlexa Fluor 532
Z2530550 Reactions kit555/565 nmAlexa Fluor 555
Z2530650 Reactions kit578/603 nmAlexa Fluor 568
Z2530850 Reactions kit650/668 nmAlexa Fluor 647
Z2531250 Reactions kit752/779 nmAlexa Fluor 750
Z2531350 Reactions kit402/421 nmAlexa Fluor 405
Z2535125 Reactions kit650/660 nmAPC (Allophycocyanin)
Z2535525 Reactions kit496, 546, 565/578 nmR-PE (R-Phycoerythrin)
Catalog number Z25307
Price (TWD)
15,470.00
線上優惠
Ends: 31-Dec-2025
22,100.00
Save 6,630.00 (30%)
1 kit
Add to cart
Quantity:
50 Reactions kit
Excitation/Emission:
590/617 nm
Label or Dye:
Alexa Fluor 594
Price (TWD)
15,470.00
線上優惠
Ends: 31-Dec-2025
22,100.00
Save 6,630.00 (30%)
1 kit
Add to cart
Generate antibody (IgG) conjugates for immunocytochemistry (ICC), immunohistochemistry (IHC), flow cytometry, and cell imaging with the Invitrogen Zenon™ Rabbit IgG Labeling Kits. Simplify your laboratory applications and reduce antibody cross-reactivity while also achieving efficient labeling of antibodies in serum, ascites fluid, or hybridoma suspensions.

Achieve fast, versatile, and reliable fluorophore-, biotin-, or enzyme-labeled IgG primary antibodies with the Zenon™ rabbit IgG labeling kits. These kits utilize Alexa Fluor fluorophores, biotin, Pacific Blue, or enzymes such as R-phycoerythrin and allophycocyanin, which are attached to monovalent, affinity purified Fab fragments. The Fab fragments, in turn, are directed against and bind with the Fc portion of IgG primary antibodies. Only a small amount of starting material is required, and the method is optimized for efficient labeling of antibodies in serum, ascites fluid, or hybridoma suspensions. Because the Zenon labeling method is based on immunoselectivity, it does not require the removal of exogenous proteins (such as serum) or amine-containing buffers from the target antibody, simplifying the process.

Zenon labeling technology greatly simplifies the use of multiple mouse-derived antibodies in the same staining protocol. Zenon tricolor labeling kits contain sufficient materials for 10 labeling reactions of each of three different fluorescent colors.

Important features of Zenon labeling technology:
• Labeled antibodies are typically ready to use in 10 minutes
• Requires only 1–20 μg primary antibody
• Simple—no purification required
• Flexible—choose from different fluorophores, biotin, HRP, alkaline phosphatase
• Multiplex with other mouse monoclonal antibodies simultaneously
• Can be used in a variety of applications including ICC, IHC, flow cytometry, and cell imaging.

Advantages of using Zenon antibody labeling kits include:

Cost savings
Zenon antibody labeling kits offer a cost-conscious and reproducible method of tagging as little as 0.4 μg in 2 μL of primary antibody, with minimal waste of expensive or difficult-to-obtain antibodies, or excessive washing steps that pose the risk of product loss.

Sensitivity
Label your primary antibodies without compromising their antigen binding affinity: Zenon dye- and enzyme-labeled Fab fragments, which are targeted to the Fc tail, are affinity purified during their preparation to ensure high affinity and selectivity for the Fc portion of the corresponding primary antibody. The procedure for chemical labeling of the Zenon Fab fragments protects their Fc-binding site, resulting in more active labeling reagents.

Speed
No purification procedure is required prior to using Zenon Fab fragments in your laboratory applications. Formation of the Fab-antibody complex occurs in fewer than five minutes, followed by a five-minute blocking step. During this time, almost all the primary antibody in the mixture is labeled with the labeled Fab fragments.

Simplicity
The Fab-antibody complexes display fluorescence or enzymatic activity that is similar in intensity to that of directly labeled primary antibodies. Varying the extent of the antibody labeling is as simple as changing the amount of added Zenon labeling reagent during the reaction. Once the labeling complexes are formed, they can used immediately, without need for antibody purification.

Reliability
The Zenon Fab-antibody complex is stable and allows subsequent or simultaneous labeling of different target cells and tissues with different complexes. After staining, an aldehyde-based fixing step may be used to prevent the transfer of different labels between different primary antibodies, preserving the initial staining pattern.

Customization
We offer custom antibody conjugation services that are efficient and confidential, and we stand by the quality of our work. We are ISO 13485:2000 certified.

For Research Use Only. Not for use in diagnostic procedures.
Specifications
ColorRed
Excitation/Emission590/617 nm
Label TypeAlexa Fluor
Labeling Scale< 1–20 μg
Product LineZenon
Product TypeLabeling Kit
Quantity50 Reactions kit
SpeciesRabbit
Labeling TargetIgG
Label or DyeAlexa Fluor 594
Unit Size1 kit
Contents & Storage
Contains 1 vial of Zenon Alexa Fluor 594 rabbit IgG labeling reagent (250 μL), and 1 vial of Zenon blocking reagent (rabbit IgG, 250 μL).

Store in refrigerator (2–8°C) and protect from light.

Citations & References (5)

Citations & References
Abstract
Aberrant expression of ID2, a suppressor of B-cell-specific gene expression, in Hodgkin's lymphoma.
Authors:Renné C, Martin-Subero JI, Eickernjäger M, Hansmann ML, Küppers R, Siebert R, Bräuninger A
Journal:Am J Pathol
PubMed ID:16877363
'The global loss of B-cell-specific gene expression is a distinctive feature of the Hodgkin-Reed/Sternberg (HRS) cells of classical Hodgkin''s lymphoma (HL). The reasons for this loss remained largely unknown as transcription factors with pleiotropic effects on B-cell-specific gene expression, namely E2A, EBF, and PAX5, are present in primary HRS cells. ... More
Importance of TRF1 for functional telomere structure.
Authors:Iwano T, Tachibana M, Reth M, Shinkai Y
Journal:J Biol Chem
PubMed ID:14559908
'Telomeres are comprised of telomeric DNA sequences and associated binding molecules. Their structure functions to protect the ends of linear chromosomes and ensure chromosomal stability. One of the mammalian telomere-binding factors, TRF1, localizes telomeres by binding to double-stranded telomeric DNA arrays. Because the overexpression of wild-type and dominant-negative TRF1 induces ... More
Interaction of phosphodiesterase 3A with brefeldin A-inhibited guanine nucleotide-exchange proteins BIG1 and BIG2 and effect on ARF1 activity.
Authors:Puxeddu E, Uhart M, Li CC, Ahmad F, Pacheco-Rodriguez G, Manganiello VC, Moss J, Vaughan M,
Journal:Proc Natl Acad Sci U S A
PubMed ID:19332778
ADP-ribosylation factors (ARFs) have crucial roles in vesicular trafficking. Brefeldin A-inhibited guanine nucleotide-exchange proteins (BIG)1 and BIG2 catalyze the activation of class I ARFs by accelerating replacement of bound GDP with GTP. Several additional and differing actions of BIG1 and BIG2 have been described. These include the presence in BIG2 ... More
pLG72 modulates intracellular D-serine levels through its interaction with D-amino acid oxidase: effect on schizophrenia susceptibility.
Authors:Sacchi S, Bernasconi M, Martineau M, Mothet JP, Ruzzene M, Pilone MS, Pollegioni L, Molla G,
Journal:J Biol Chem
PubMed ID:18544534
Human genes coding for pLG72 and d-amino acid oxidase have recently been linked to the onset of schizophrenia. pLG72 was proposed as an activator of the human FAD-containing flavoprotein d-amino acid oxidase (hDAAO). In the brain this oxidizes d-serine, a potent activator of N-methyl-d-aspartate receptor. We have investigated the mechanistic ... More
An efflux transporter of silicon in rice.
Authors:Ma JF, Yamaji N, Mitani N, Tamai K, Konishi S, Fujiwara T, Katsuhara M, Yano M
Journal:Nature
PubMed ID:17625566
Silicon is an important nutrient for the optimal growth and sustainable production of rice. Rice accumulates up to 10% silicon in the shoot, and this high accumulation is required to protect the plant from multiple abiotic and biotic stresses. A gene, Lsi1, that encodes a silicon influx transporter has been ... More