GE17-0408-01
HiTrap® Chelating High Performance
Cytiva 17-0408-01, pack of 5 × 1 mL
About This Item
Recommended Products
ligand
iminodiacetic acid
packaging
pack of 5 × 1 mL
manufacturer/tradename
Cytiva 17-0408-01
parameter
<4 mL/min flow rate
42 psi
bed size
7 mm × 25 mm
bed volume
1 mL
column I.D.
7 mm
matrix
highly cross-linked 6% agarose
avg. part. size
34 μm
cleaning
2-14
working range
3-13
General description
Application
Features and Benefits
- For optimizing purification of histidine-tagged Proteins using different kinds of metal ions.
- Conveniently charge with your metal of choice.
- Iminidoacetic acid coupled to Sepharose™ High Performance.
- Purifying Proteins with exposed histidine groups via metal ion complex formation.
- Simple operation with a syringe, pump or chromatographic system such as ÄKTA® design or FPLC™ System.
- Packed with Chelating Sepharose™ High Performance
- Simple operation with a syringe, pump or chromatographic system such as ÄKTATMdesign or FPLCTM System
Storage and Stability
Analysis Note
Other Notes
Legal Information
related product
Signal Word
Warning
Hazard Statements
Precautionary Statements
Storage Class Code
3 - Flammable liquids
Certificates of Analysis (COA)
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This page shows how to separate proteins and peptides with affinity for metal ions by immobilized metal chelate affinity chromatography using HiTrap Chelating HP, Chelating Sepharose Fast Flow,His MicroSpin Purification Module or HisTrap Kit from GE Healthcare.
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This page shows how to purify or remove proteins and peptides with exposed amino acids with Chelating Sepharose High Performance, Chelating Sepharose Fast Flow, Capto Chelating from GE Healthcare.
Protocols
This page shows how to perform a separation with poly (His) fusion proteins which are affinity chromatography tags used in His MicroSpin Purification Module, HisTrap Kit, HiTrap Chelating HP and Chelating Sepharose Fast Flow products from GE Healthcare.
Column packing and preparation for Affinity Chromatography with specific groups of biomolecules.
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This page shows how to convert between linear flow and volumetric flow rates in affinity chromatography.
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