Human Anti-SARS-CoV-2 Spike RBD Antibody-coupled Magnetic Beads

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MBS-K014-2mg
$950.00
MBS-K014-10mg (5mg X 2)
$2,960.00
MBS-K014
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Product Information
Items
Size 2mg
Size 10mg (5mg × 2)
Particle size
2 μm
2 μm
Physical appearance
Powder mixture
Powder mixture
Binding Capacity
>192 pmol (10 μg) Spike RBD/mg beads
>192 pmol (10 μg) Spike RBD/mg beads
Formulation
PBS, pH7.4, with 10% Trehalose
PBS, pH7.4, with 10% Trehalose
Reconstitution
2 mL sterile deionized water (1 mg beads/mL)
5 mL sterile deionized water (1 mg beads/mL)
Product Description

The Human Anti-SARS-CoV-2 Spike RBD Antibody-coupled Magnetic Beads is produced by coupling biotinylated anti-RBD antibody to streptavidin-conjugated magnetic beads. The pre-coupled beads are ready to use for capturing spike protein from your sample with high specificity. The uniform size and large surface-to-volume ratio of the beads ensure highly efficent immunocapture in a simple, fast and convenient workflow with high reproducibilty of data.

Application

This product is intended for immunocapture, biopanning. This is a non-sterile product.

* The Isotype control (Cat. No. SMB-B01) is sold separately.

Reconstitution

See Certificate of Analysis (CoA) for detailed instruction.

Storage

Upon receipt, please store the Beads at -20°C. The shelf life is 1 year at -20 °C.

Please avoid more than 3 freeze-thaw cycles once reconstitution, immediate use after reconstitution is highly recommended.

Assay Principles

Application Method:
a) Reconstitute the Beads following the COA. Wash and re-suspend the beads to a certain concentration by adding your dilution buffer.
b) Add the prepared beads to your samples.
c) Beads can be separated from your samples afterwards using a magnetic plate.

The magnetic beads technology makes use of the easy and efficient collection of beads in magnetic field to facilitate antibody purification in a simple workflow of “bind-wash-elute”. In contrast to common separation techniques, this method does not require columns or centrifugation, and is therefore ideal in high-throughput applications.