SuperMag Carboxyl Beads Conjugation Kit

SKU:BHT12200005
New
Overview
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Ocean NanoTech’s carboxyl terminated Super Mag magnetic beads of various diameters (50 nm, 100 nm, 150 nm and 200 nm) are now available in an easy-to-use kit format to enable researchers to conjugate antibodies, proteins, peptides or other biomolecules of their own choice to these magnetic beads. Attribute to the large surface area, excellent colloidal [...]
Category Research Reagent
Options selector
Catalog no. Particle Size Kit Size Color
KSC0050-04 50 nm
KSC0100-04 100 nm
KSC0150-04 150 nm
KSC0200-04 200 nm
Available Options

Select the variant that best fits your experiment. Availability and lead time may vary by option.

  • Options — Particle Size: 50 nm, 100 nm, 150 nm, 200 nm; Kit Size: 1 Kit (4 preps)
  • Lead time: varies by selected option.
  • Storage: EDC and Sulfo-NHS -20 °C; Others 2-8 °C
  • Shipping: cold-chain shipment (typically with ice packs).
  • Upon receipt: refrigerate upon receipt.
  • Sales terms and conditions: Please review prior to ordering.
Field Specification
Mfr No KSC0050, KSC0100, KSC0150, KSC0200
Form Liquid
Product Type
  • Magnetic Bead Conjugation Kit
Relative Density 1.00 g/cm3
Shipping Ice Pack
Storage EDC and Sulfo-NHS -20 °C; Others 2-8 °C

Product Overview

SuperMag Carboxyl Beads Conjugation Kit is a Conjugation Kit from Ocean NanoTech.

Ocean NanoTech’s carboxyl terminated Super Mag magnetic beads of various diameters (50 nm, 100 nm, 150 nm and 200 nm) are now available in an easy-to-use kit format to enable researchers to conjugate antibodies, proteins, peptides or other biomolecules of their own choice to these magnetic beads. Attribute to the large surface area, excellent colloidal stability and unique surface coating of the SuperMag Carboxyl Beads as well as the specifically formulated conjugation buffers, the resulting conjugates exhibit high binding capacity and low non-specific binding. The kit contains sufficient reagents & components for performing at least 4 conjugation reactions. Briefly, the magnetic beads are activated using carbodiimide and N-hydroxysuccinimide followed by conjugation to amino groups that are present on the target protein/ligand. The recommended protocol has been used to successfully conjugate bovine serum albumin, streptavidin or immunoglobulin to these magnetic beads.

Kit Contents

  • SuperMag Carboxyl Beads: 1 mL (10 mg/mL)
  • Activation Buffer (AB100): 15 mL
  • Quenching Buffe (QB100)r: 1 mL
  • Storage Buffer (SB100): 30 mL
  • EDC (1-ethyl-3-(3-dimethylaminopropyl) carbodiimide), 20 mg (Store at -20 °C upon arrival
  • Sulfo-NHS: 20 mg (Store at -20 °C upon arrival)

Physical & Chemical Properties

pH 6.0 - 8.0 at 25 °C (77 °F)
Solubility Completely miscible
Chemical Stability Stable under recommended storage conditions.
Incompatible Materials Strong oxidizing agents

Safety & Handling

For Research Use Only (RUO). Consult the Safety Data Sheet (SDS) before use and follow all applicable safety protocols.

StorageEDC and Sulfo-NHS -20 °C; Others 2-8 °C
What biomolecules can be conjugated with this kit?

This conjugation kit is optimized for covalent attachment of proteins, antibodies, peptides, and other amine- or carboxyl-containing biomolecules to the nanoparticle surface. The conjugation chemistry exploits EDC/NHS carbodiimide coupling or direct amine coupling depending on the specific kit protocol. Refer to the product data sheet for the list of validated biomolecule types and loading ratios.

What particle size variants are available for this kit?

This kit is available in multiple particle size variants (accessible via the variant selector). Particle size affects hydrodynamic behavior, conjugation efficiency, and downstream assay sensitivity. Smaller particles (10–15 nm) are preferred for solution-phase immunoassays, while larger particles (20–30 nm) may be better suited for lateral flow or magnetic separation applications.

How do I assess conjugation efficiency after completing the protocol?

Conjugation efficiency can be assessed by measuring protein concentration in the pre- and post-conjugation supernatant using a BCA or Bradford assay to estimate the amount of protein immobilized on the nanoparticle surface. Gel electrophoresis, DLS (dynamic light scattering), and functional assays (e.g., antibody binding activity) are recommended for comprehensive conjugate characterization.

What storage conditions are required for conjugated nanoparticles?

Conjugated nanoparticles should be stored in the supplied storage buffer at 2–8°C and protected from light. Avoid freezing, as freeze-thaw cycles can cause irreversible aggregation. Short-term storage at room temperature is acceptable for applications requiring immediate use, but long-term stability should be evaluated under intended storage conditions.

BioHippo partners with leading life science suppliers to offer flexible purchasing and support options. Contact our team to discuss the following add-on services.

  • Bulk & Volume Pricing: Reduced per-unit pricing for multi-unit or project-scale orders. Submit a quote request for a customized offer.
  • Expedited Fulfillment: Priority order handling may be available for time-sensitive projects. Confirm availability before ordering.
  • Technical Consultation: Our scientific team provides protocol guidance and troubleshooting at no additional charge.
  • Custom Configurations: Alternative formulations, pack sizes, or kit configurations may be available upon request.

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