GE17-5268-01
Ni Sepharose™ High Performance
Cytiva 17-5268-01, pack of 25 mL
About This Item
Recommended Products
packaging
pack of 25 mL
manufacturer/tradename
Cytiva 17-5268-01
matrix
highly cross-linked 6% agarose
avg. part. size
34 μm
cleaning in place
2-14(Ni2+-stripped medium.)
working range
3-12(Ni²⁺-stripped medium.)
capacity
≥40 mg binding capacity (histidine-tagged protein/ml medium)(Protein binding capacity is protein-to-protein dependent.)
General description
Ni Sepharose™ High Performance consists of highly cross-linked agarose beads to which a chelating group has been coupled. This chelating group is precharged with Ni2+, which will selectively retain proteins with exposed histidine groups.
The high stability and broad compatibility of Ni Sepharose™ High Performance maintains biological activity and increases product yield, at the same time as it greatly expands the range of suitable operating conditions.
Features and Benefits
- High-performance purification of histidine-tagged proteins
- Negligible leakage of Ni2+ ions.
- High binding capacity, at least 40 mg/mL medium
- Compatible with a wide range of reducing agents, detergents, denaturants and other additives
- 34 μm bead size for improved resolution
Storage and Stability
Analysis Note
Legal Information
These products are sold under a license from Sigma-Aldrich under patent number EP 1276716 (Metal chelating compositions) and equivalent patents and patent applications in other countries.
Signal Word
Warning
Hazard Statements
Precautionary Statements
Storage Class Code
3 - Flammable liquids
Certificates of Analysis (COA)
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Protocols
This page describes a small-scale purification (minipreps) of histidine-tagged recombinant proteins using His SpinTrap and His SpinTrap Kit from GE Healthcare.
This page shows how to purify histidine-tagged recombinant proteins using Ni Sepharose High Performance from GE Healthcare.
This page shows how to purify protein A-tagged proteins using GE Healthcare products.
Column packing and preparation for Affinity Chromatography with specific groups of biomolecules.
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