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| Product Name | Magrose COOH (10-30 µm) |
| Catalog No. | SM-HMM-0023 |
| Description | Agarose-coated magnetic beads can be used for enrichment, separation and purification of biomolecule (proteins, peptides, oligonucleotides, drug molecules, etc.). They have abundant active functional groups, faster magnetic responsiveness, and lower non-specific adsorption. |
| Features | Rich content of surface active groups: Magrose COOH groups ~1000 µmol/g; Good operational performance: the magnetic beads are uniformly dispersed and Good stability and batch-to-batch reproducibility, batch-to-batch group content CV <5%; High binding amount of target substances, low non-specific adsorption: dedicated to the field of separation and purification. |
| Storage | Stable at 2-8°C (can be stored or transported at room temperature for short periods of time) |
| Shelf Life | 2 years |
| Average Particle Size | 10-30 µm |
| Surface Group / Content | COOH (~60 µmol/g) |
| Magnetic Core | Fe3O4 |
| Shell | Agarose |
| Magnetism Type | Superparamagnetic |
| Preservation Fluid | 20% ethanol |
| Concentration | 20% (v/v) |
Magnetic beads have become indispensable tools in modern biological research, enabling efficient enrichment, separation, and purification of biomolecules. Among various types, agarose-coated magnetic beads stand out for their biocompatibility and ability to integrate functional groups for specific binding.
Magrose COOH (10-30 µm) is designed to address the growing demand for reliable separation tools in fields such as proteomics, genomics, and drug discovery. Its core-shell structure combines the magnetic responsiveness of Fe₃O₄ with the hydrophilic, biocompatible properties of agarose, creating a versatile platform for biomolecule manipulation.
This product is tailored for researchers seeking high binding capacity, low non-specific adsorption, and consistent performance across batches. It supports a wide range of applications, from protein purification and peptide enrichment to oligonucleotide isolation and drug molecule screening, making it a valuable asset in both academic and industrial research settings.
Abundant surface active groups with a COOH content of approximately 60 µmol/g, providing ample binding sites for biomolecule conjugation.
Uniform particle size distribution (10-30 µm) ensures consistent dispersion and reliable performance in various experimental protocols.
Superparamagnetic property allows for fast magnetic responsiveness, enabling quick separation without residual magnetism after removal of the magnetic field.
Excellent stability with batch-to-batch reproducibility (group content CV <5%), ensuring consistent results across experiments and research projects.
Formulated with 20% ethanol as preservation fluid, maintaining product integrity during storage and transportation.
Stable at 2-8°C with short-term room temperature storage/transportation capability, offering flexibility in logistics and laboratory use.
2-year shelf life provides long-term usability, reducing the need for frequent product replacement.
20% (v/v) concentration optimizes handling and dilution for specific experimental requirements.
High target binding capacity derived from abundant COOH groups, facilitating efficient capture of proteins, peptides, oligonucleotides, and drug molecules.
Low non-specific adsorption minimizes background interference, improving the purity of isolated biomolecules and enhancing experimental accuracy.
Biocompatible agarose shell ensures minimal damage to biomolecules, preserving their structural and functional integrity during separation.
Fast magnetic separation saves experimental time, increasing workflow efficiency compared to traditional centrifugation-based methods.
Consistent batch performance reduces experimental variability, supporting reliable data interpretation and reproducible research outcomes.
Versatile compatibility with various buffers and experimental conditions, adapting to diverse research needs and protocols.
Easy handling and storage, with no special equipment required beyond a magnetic separator, making it accessible for most laboratories.
For research use only, not for clinical use.
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