Rabbit anti-goat IgG, FSD™ 800
Cat. No. List below
Description
Key Features
a. Enhanced Sensitivity: Multiple secondary antibodies can bind to a single primary antibody, providing significant signal amplification and enabling visualization of low-abundance targets
b. Superior Optical Properties: FSD Fluor™ 800 offers superb fluorescence intensity and high quantum yield compared to traditional dyes
c. Optimal Excitation: Can be excited using 750 or 785 nm laser lines, aligning well with common near-infrared (NIR) imaging systems
d. Low Cross-Reactivity: Ensures specific binding to goat IgG, reducing background noise
Applications
1. Fluorescence Microscopy: Enables high-resolution imaging of cellular structures and protein localization
2. Flow Cytometry: Facilitates rapid analysis of thousands of cells per second, allowing for precise quantification of target proteins
3. Microplate Assays: Enhances sensitivity in plate-based immunoassays for protein detection and quantification
4. Protein and Nucleic Acid Blots: Improves detection limits in Western, Northern, and Southern blotting techniques
5. In Situ Hybridization: Allows for sensitive detection of specific DNA or RNA sequences within cells or tissues
Advantages
1. High Sensitivity: The ability of multiple secondary antibodies to bind to a single primary antibody significantly amplifies the signal, allowing for detection of low-abundance targets
2. Time Efficiency: The strong signal amplification can reduce experimental time by requiring shorter incubation periods
3. Versatility: Suitable for a wide range of biological experiments and imaging techniques
4. Excellent Optical Properties: The FSD™ 800 conjugate offers superior fluorescence intensity and high quantum yield, resulting in improved signal-to-noise ratios
5. Near-Infrared Emission: With an emission maximum at 790 nm, it reduces background autofluorescence, further improving signal quality
6. Compatibility: Well-suited for multiplexing experiments, allowing researchers to simultaneously detect multiple targets in a single sample
7. Stability: The antibody maintains its fluorescence properties after conjugation to biomolecules, ensuring reliable result
Rabbit anti-goat IgG, FSD™ 800 combines high specificity, superior optical properties, and versatile applications, making it an excellent choice for researchers seeking sensitive and reliable detection in various biological assays.
Specifications
- Conjugate: FSD™ 800
- Species reactivity: Goat
- Target: IgG
- Excitation/Emission Max.(nm): 774/790
- Host/Isotype: Rabbit/IgG
- Type: Secondary antibody
- Antibody form: Whole antibody
- Form: Liquid
- Concentration: 2 mg/mL
- Storage buffer: PBS (pH 7.4)
- Contains: 1.5% BSA, 5 mM sodium azide
- Storage conditions: 4 ℃, protect from light
| Quick link (Cat.#) | Series | Quick link (Cat.#) | Series |
| RSA4445 | Rabbit anti-goat IgG, FSD™ 488 | RSA4441 | Rabbit anti-goat IgG, Flamma® 488 |
| RSA4455 | Rabbit anti-goat IgG, FSD™ 555 | RSA4451 | Rabbit anti-goat IgG, Flamma® 552 |
| RSA4495 | Rabbit anti-goat IgG, FSD™ 594 | RSA4491 | Rabbit anti-goat IgG, Flamma® 594 |
| RSA4465 | Rabbit anti-goat IgG, FSD™ 647 | RSA4461 | Rabbit anti-goat IgG, Flamma® 648 |
| RSA4475 | Rabbit anti-goat IgG, FSD™ 680 | RSA4471 | Rabbit anti-goat IgG, Flamma® 675 |
| RSA4405 | Rabbit anti-goat IgG, FSD™ 750 | RSA4401 | Rabbit anti-goat IgG, Flamma® 749 |
| RSA4485 | Rabbit anti-goat IgG, FSD™ 800 | RSA4421 | Rabbit anti-goat IgG, HRP |
Background
Fluorescent Protein/Antibody
Fluorescence labeled proteins and antibodies might provide great advantages in the identification of their binding partners or in the observation of biological processes. They allow to visualize cellular environment, to define their function, regulation and interactions. In advanced assays, fluorescent proteins can be utilized in measuring of protein–protein interactions or conformational changes, by measuring intensity changes or FRET energy transfer. An ideal fluorescent label should be small, bright, stable, and without any perturbation to the biological system. Additionally, the fluorescence labeling should be performed at non-active site with the possibility for multiplexing and avoided to the tendency to aggregate.
Organic fluorescent dye-labeled proteins have superior properties over fluorescent protein–conjugated counterparts including, wide spectral range, smaller size, greater photostability, and higher brightness. However, dye–labeled proteins also have some limitations that their sensitivity is low due to lack of the amplification step associated with the secondary antibody, and the protein should be free of contaminants and stabilizing agents. BioActs provides a wide range of fluorophore-conjugated proteins and antibodies for a variety of biological applications.
Fluorescent Dye conjugated Secondary Antibody
Indirect or secondary immunofluorescence method employs specific interactions between primary and secondary antibody. It is more commonly used than the direct immunofluorescence method due to strong signal amplification and cost-effectiveness. Non-labeled primary antibody in indirect immunofluorescence specifically binds to target molecule, and fluorescence conjugated secondary antibody acts as an antigen of the primary antibody. In addition, the polyclonal nature of secondary antibody features multiplex binding of secondary antibodies per a primary antibody resulting in amplified fluorescence signal. However, since indirect immunofluorescence method utilizes complicated antibody-antibody interaction, the experiment process is complicated and the nonspecific fluorescence signals along with cross reaction might occur. BioActs provides a wide spectrum of fluorescent dye conjugated secondary antibodies directed against IgG from mouse, rabbit, rat, and goat.
In spite of competing approaches such as peptide tagging or mass spectrometry, antibody-based detection is the most broadly used application in analysis of specific protein in complex samples. Fluorescent secondary antibodies are raised against IgG heavy and light chains of the target IgG and minimized cross reactivity by affinity purification and by adsorption against the sera of a number of species. For multiple labeling experiments where cross reactivity is the critical issue, we prepare highly cross-adsorbed goat anti–mouse IgG, goat anti–rabbit IgG, and goat anti–rat IgG fluorescent antibodies. Our antibody probes are conjugated with Flamma® Fluor series, which displays strong fluorescence and photostability, along with ICG and horseradish peroxidase (HRP). Due to their outstanding optical and biological properties, Flamma® Fluor conjugates are superior to most conventional fluorescent secondary antibodies and being optimal molecular probes in many applications. BioActs offers series of fluorescent secondary antibodies as suitable molecular probes for many biological experiments such as fluorescence microscopy, flow cytometry, microplate assays, as protein and nucleic acid blots, in situ hybridization, etc.
Citation & Reference
1. Agustina, Lia. Visualization of the physical and functional interaction between hMYH and hRad9 by Dronpa bimolecular fluorescence complementation. BMC molecular biology 15.1 (2014): 1.
2. Lee, Cheol-Jung. Magnolin inhibits cell migration and invasion by targeting the ERKs/RSK2 signaling pathway. BMC cancer 15.1 (2015): 1.
3. Promoter- and RNA polymerase II-dependent hsp-16 gene association with nuclear pores in Caenorhabditis elegans. Rohner S,Kalck V,Wang X,Ikegami K,Lieb JD,Gasser SM,Meister P The Journal of cell biology (200:589)
4. BRAG2/GEP100/IQSec1 interacts with clathrin and regulates α5β1 integrin endocytosis through activation of ADP ribosylation factor 5 (Arf5). Moravec R,Conger KK,D'Souza R,Allison AB,Casanova JE The Journal of biological chemistry (287:31138)







