How Column Chromatography Works to Separate Proteins
Without a doubt, protein purification has been an important process in protein research, particularl...
Cobalt HTC 6% Agarose Beads are suitable for downstream purification using IMAC. These resins combine the advantages of Cobalt purification with the high flow rates of the HTC resin (70% higher than commercial standards).
The maximum flow rate at 15 cm bed height is >1000 cm/h and the maximum pressure is >300 kPa. The binding capacity with an approximately 30 kDA protein is 5 mg/mL.
These products are excellent for large scale His-tagged protein purification:
HTC beads are high throughput beads designed to meet the demand for industrial process separation, suitable for use with FPLC or HPLC, and can withstand pressures up to 300 kPa. Their rigidity and mechanical resistance permits high flow rates with good resolution in a minimum time frame, making these beads ideal for process-scale use. HTC beads are highly crosslinked 4% and 6% agarose matrices and have excellent physical and chromatographic qualities. They are autoclavable. These beads are an ideal support for the immobilization of ligands for Affinity Chromatography and base media support for producing IEX (Ion Exchange) and hydrophobic interaction chromatography resins.
Storage/Handling: Store at 4°C. Do not freeze.
Catalog ID | R-203 |
---|---|
Name(s) | Cobalt HTC Agarose Beads |
Bead Size | Spherical, Standard: ~50-150 μm (approx.) |
Cross-linking | Highly crosslinked |
Agarose % | 6% agarose |
Binding/Loading Capacity | ~15 (μmol Me2+/ml gel) |
Maximum Flow Rate | 1000 cm/h at 15 cm bed height |
Maxium Pressure | 300 kPa at 15 cm bed height |
Chemical Stability | Stable in all commonly used reagents. |
Temperature Stability | Autoclavable at 120°C for 20 min in H2O |
Storage Buffer | 20% Ethanol |
Storage/Handling | Store at 4°C. Do NOT freeze. |
Without a doubt, protein purification has been an important process in protein research, particularl...
Purifying a target protein is an important step before investigating its structure and function. To...
Agarose beads are a foundational tool used for various protein purification techniques. Most frequen...
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