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Cleavable Hydrazide-Terminated Magnetic Beads

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1 μm BcMag™ Cleavable Hydrazide-Terminated Magnetic Beads
Cat. No.  ID101

Unit Size  150 mg
Order
1 μm BcMag™ Cleavable Hydrazide-Terminated Magnetic Beads
Cat. No.  ID102

Unit Size  300 mg
Order
2.5 μm BcMag™ Cleavable Hydrazide-Terminated Magnetic Beads
Cat. No.  ID103

Unit Size  150 mg
Order
2.5 μm BcMag™ Cleavable Hydrazide-Terminated Magnetic Beads
Cat. No.  ID104

Unit Size  300 mg
Order
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Cat. No.

Product Name

Unit Size

Order

ID101

1 μm BcMag™ Cleavable Hydrazide-Terminated Magnetic Beads

150 mg

ID102

1 μm BcMag™ Cleavable Hydrazide-Terminated Magnetic Beads

300 mg

ID103

2.5 μm BcMag™ Cleavable Hydrazide-Terminated Magnetic Beads

150 mg

ID104

2.5 μm BcMag™ Cleavable Hydrazide-Terminated Magnetic Beads

300 mg

Specification

Composition

Magnetic Bead grafted with cleavable hydrazide group on the surface

Number of Beads

~ 1.68 x 109 beads/mg (1μm beads)

~1.47 x 108 beads/mg (2.5μm beads)

Stability

Short Term (<1 hour): pH 3-11; Long-Term: pH 4-10

Temperature: 4°C -140°C; Most organic solvents

Magnetization

~40-45 EMU/g

Type of Magnetization

Superparamagnetic

Formulation

Lyophilized Powder

Functional Group Density

1μm Magnetic Beads

~200 μmole / g of Beads

2.5μm Magnetic Beads

~195 μmole / g of Beads

Storage

Ship at room temperature. Store at 4°C upon receipt. Do not freeze.

Description

BcMag™ Cleavable Hydrazide-Terminated Magnetic Beads are uniform magnetic beads grafted with a high density of cleavable hydrazide functional groups on the surface. Hydrazide chemistry is effective for labeling, immobilizing, or conjugating glycoproteins via glycosylation sites, which are frequently (as with most polyclonal antibodies) positioned in domains distant from the critical binding sites whose function needs to be preserved. Coupling antibodies in this manner selectively targets heavy chains in the Fc portion of the molecule, assisting in the best possible preservation of antigen binding activity by the ends of the Fv regions. At pH 5 to 7, hydrazide-terminated supports and compounds will conjugate with carbonyls of oxidized carbohydrates (sugars), producing hydrazone linkages.

The hydrazide beads are suitable for conjugating larger glycoproteins and glycolipids, carbohydrates or other ligands. Since the active hydrazide group is linked with the beads through a built-in cleavable disulfide linker (Fig.1), reducing agents such as DTT or β-mercaptoethanol can cleave separate the target molecule-ligand complex from the beads after affinity purification. Moreover, the hydrophilic surface ensures low nonspecific adsorption, excellent dispersion, and easy handling in various buffers.

Cleavable hydrazide structure

Workflow

The Beads work perfectly as affinity resin for affinity purification to refine molecules, cells, and parts of cells into purified fractions. After conjugation with ligands, add the beads to a sample containing the target molecules, then mix, incubate, wash and elute the target molecules.

Workflow of magnetic beads for affinity purification

Features and Benefits

Covalently coupling with a cleavable built-in disulfide bond allows the ligand-target molecule complex to separate from the beads.

Specific immobilization—the hydrazide-activated beads bind exclusively to pure glycoproteins containing sugar groups that have been gently oxidized with periodate (e.g., sialic acid).

Stable covalent bond with low levels of ligand leakage

Maintains antibody function – immobilizes IgG via the Fc region, leaving both antigen binding sites available for target capture.

Low nonspecific binding

High capacity – Immobilize 15-20µg antibody/mg beads.

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