AlphaPlex™-545 (Terbium) Acceptor beads conjugated to anti-human IgG antibody, for use in Alpha no-wash multiplexing assays.
For research use only. Not for use in diagnostic procedures. All products to be used in accordance with applicable laws and regulations including without limitation, consumption and disposal requirements under European REACH regulations (EC 1907/2006).
Feature | Specification |
---|---|
Application | Protein-Protein Interaction |
AlphaPlex™-545 (Terbium) Acceptor beads conjugated to anti-human IgG antibody, for use in Alpha no-wash multiplexing assays.
For research use only. Not for use in diagnostic procedures. All products to be used in accordance with applicable laws and regulations including without limitation, consumption and disposal requirements under European REACH regulations (EC 1907/2006).
AlphaPlex™-545 (Terbium) Acceptor beads conjugated to anti-human IgG antibody. These beads are used to capture human IgG antibodies, and can be used in conjunction with Alpha Donor beads to create no-wash assays for:
AlphaPlex Acceptor beads are intended to be used in multiplexing assays, in conjunction with AlphaLISA Acceptor beads and Alpha Donor beads. In a typical Alpha assay, 250 µg of Acceptor beads is sufficient to run 250-500 wells using a 50 µL reaction volume.
Application |
Protein-Protein Interaction
|
---|---|
Automation Compatible |
Yes
|
Bead Type or Material |
AlphaPlex Terbium (545) Acceptor
|
Brand |
AlphaPlex
|
Conjugates |
Anti-human IgG
|
Detection Modality |
Alpha
|
Product Group |
Beads
|
Shipping Conditions |
Shipped in Blue Ice
|
Target Class |
Biologics
|
Target Species |
Human
|
Technology |
Alpha
|
Unit Size |
5 mg
|
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Alpha has been used to study a wide variety of interactions, including protein:protein, protein:peptide, protein:DNA, protein:RNA...
The AlphaPlex™ reagent system was designed to enable fast and easy transition from well-established AlphaLISA™ assays to...
Now you can quantify multiple analytes in a single well for faster and more accurate results, even with low sample volumes
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