HiSur Protein G Beads

SKU:BHD12200230
Overview
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HiSur Protein G Beads are superparamagnetic beads (1 µm, 10 mg/mL) with very large surface area and covalently bound Protein G. Superior Fc-binding capacity for antibody purification, immunoprecipitation, and high-sensitivity immunoassay development.
Particle Type Magnetic Bead
Bead Series HiSur
Surface Chemistry Protein G
Particle Size 1 µm
Conjugation Type Pre-conjugated
Dispersion Aqueous
Applications Immunoassay, Immunoprecipitation, Cell Separation
Options selector
Catalog no. Particle Size Volume
HPG1000-002 1 um
Available Options

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

  • Options: Particle Size: 1 um | Volume (3 options): 100 mL, 2 mL, 5 mL
  • Lead time: varies by selected option; please contact us for current fulfillment timing.
  • Storage: Store at 2-8°C. Freezing of particles may result in irreversible aggregation and loss of binding activity.
  • Shipping: cold-chain shipment (typically with ice packs).
  • Upon receipt: inspect packaging; record lot number; allow product to reach appropriate working temperature per the product datasheet before use.
  • Sales terms and conditions: all sales are subject to BioHippo's standard Terms and Conditions.
Field Specification
Mfr No HPG1000
Alternative Names Magnetic particles, protein G functionalized
Concentration 10 mg/mL
Form liquid
Product Type
  • Beads & Nanoparticles
  • Beads
  • Magnetic Beads
Relative Density 1.00 g/cm3
Shipping Ice Pack
Storage Store at 2-8°C. Freezing of particles may result in irreversible aggregation and loss of binding activity.

Overview

HiSur Protein G Beads are Protein G conjugated magnetic beads. The Protein G is covalently coupled to their surface makes most of the binding sites sterically available for binding of IgG. Attribute to their very large surface area and unique surface coating, Protein G Hi-Sur Mag exhibit superior binding capacity and significantly low non-specific binding.

Key Features

  • Superior binding capacity
  • Significantly low non-specific binding
  • Comparable performance with Dynabeads® Protein G and Pierce™ Protein G Magnetic Beads

Applications

  • Immunoprecipitation
  • Assay development

Physical & Chemical Properties

  • Surface Functional Group: Protein G
  • pH: 6.0 - 8.0 at 25 °C (77 °F)
  • Water Solubility: Completely miscible
  • Magnetic Content: ~40%
  • Chemical Stability: Stable under recommended storage conditions.
  • Appearance / Color: brown/black

HiSur Protein G Beads have approximately three times the surface area per bead compared to MonoMag-format Protein G beads, resulting in superior Protein G loading density and higher IgG binding capacity per unit volume. This enables capture of more antibody per mg of beads.

Primary applications include immunoprecipitation (IP), co-IP, antibody purification from conditioned media or serum, immune complex pull-down, and high-sensitivity magnetic immunoassay development.

Protein G binds IgG from human, mouse, rat, rabbit, bovine, goat, and other common laboratory species, with generally broader subclass coverage than Protein A. Human IgG3 and mouse IgG1 bind well to Protein G but not to Protein A.

Elute with low-pH glycine buffer (pH 2.0–2.5), collect into neutralization buffer immediately. For preparative antibody purification, gentle acid conditions preserve antibody activity better than detergent elution.

HiSur Protein G Beads are available in 2 mL, 5 mL, and 100 mL volumes at 10 mg/mL. For bulk quantities or custom concentrations, contact support@biohippo.com.

The following customization and add-on services are available for this product through the supplier. For inquiries and pricing, contact support@biohippo.com.

Customization Options

  • Custom Particle Sizes: Magnetic beads in sizes beyond the standard catalog range, with narrow size distribution from nanometers to micrometers, can be manufactured for specific assay geometries and separation requirements.
  • Custom Surface Functionalization: Customized surface coatings and functional group densities are available to optimize binding capacity, non-specific binding profiles, and colloidal stability for specific applications.
  • Custom Conjugation Service: Pre-conjugated magnetic bead–antibody, bead–protein, or bead–streptavidin conjugates prepared using your supplied biomolecule are available. The supplier specializes in bioconjugation chemistry across magnetic beads, iron oxide nanoparticles, quantum dots, and latex beads.
  • Assay Development Services: Support for magnetic bead-based chemiluminescent assay, lateral flow immunoassay, and custom immunoassay platform development is available.
  • Bulk & OEM Manufacturing: OEM magnetic beads for chemiluminescent assay, lateral flow immunoassay, CTC (circulating tumor cell) isolation for liquid biopsy, and T-cell isolation and activation for immunotherapy are available at production scale.

To inquire about customization options, request a quote, or discuss OEM manufacturing, contact support@biohippo.com.

  1. Jensen P et al. (2021). Improved Immunoprecipitation to Mass Spectrometry Method for the Enrichment of Low-Abundant Protein Targets. Methods Mol Biol. DOI: 10.1007/978-1-0716-1186-9_14 PMID: 33420993
  2. Guo L et al. (2026). Thread-Designed Vascular Scaffold with Magneto-Optical Probes Capture and Elimination of Circulating Tumor Cells In Vivo. Adv Mater. DOI: 10.1002/adma.202516675 PMID: 41546398
  3. Zhang C et al. (2026). Multivalent capture of circulating tumor cells using tetrahedral DNA framework-targeted nanomagnetic beads integrated microfluidic device. Colloids Surf B Biointerfaces. DOI: 10.1016/j.colsurfb.2025.115142 PMID: 40972107
  4. Zeng T et al. (2025). Integrated Biomimetic Platform for Enhancing the Efficient Capture and Visual Identification of Circulating Tumor Cells. Anal Chem. DOI: 10.1021/acs.analchem.5c06259 PMID: 41384307
  5. Su LT et al. (2025). A Dual Nano-Signal Probe-Based Electrochemical Immunosensor for the Simultaneous Detection of Two Biomarkers in Gastric Cancer. Biosensors (Basel). DOI: 10.3390/bios15020080 PMID: 39996982
  6. Faresjö M (2026). A Useful Guide for Analysis of Biomarkers in Cancer by Fluorochrome (Luminex) Technique. Methods Mol Biol. DOI: 10.1007/978-1-0716-4901-5_1 PMID: 41478962
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