GE17-5154-01
HiTrap® DEAE Fast Flow
Cytiva 17-5154-01, pack of 5 × 5 mL
Synonym(s):
DEAE HiTrap Column, Fast Flow DEAE Column
About This Item
Recommended Products
ligand
diethylaminoethyl
description
Ion Exchanger Type (value)
packaging
pack of 5 × 5 mL
manufacturer/tradename
Cytiva 17-5154-01
parameter
42 psi
bed size
16 mm × 25 mm
bed volume
5 mL
column I.D.
16 mm
matrix
6% cross-linked agarose
particle size
45-165 μm
average diameter
90 μm
cleaning
2-14
working range
2-12
suitability
suitable for bioprocess medium
General description
Q, SP, DEAE, and CM Sepharose™ Fast Flow are based on a robust, 6% highly cross-linked beaded agarose matrix with good flow properties and high loading capacities. ANX Sepharose™ 4 Fast Flow (high sub) is based on 4% highly cross-linked beaded agarose. This results in a medium with higher porosity, which is particularly useful for the purification of high molecular mass proteins.
The active end of the charged group is the same for DEAE Sepharose Fast Flow and ANX Sepharose™ Fast Flow (high sub), the difference is the length of the carbon chain of the charged group. DEAE Sepharose Fast Flow has a diethylaminoethyl-group bound to the agarose whilst ANX Sepharose™ 4 Fast Flow (high sub) has a diethylaminopropyl group attached.
Features and Benefits
- Convenient and affordable for fast, easy ion exchange separations either alone or connected in series.
- The industry standard for ion exchange chromatography.
- High flow rates and good scale-up potential.
- Use a weak ion exchanger if the selectivity of a strong ion exchanger is insufficient.
- Predictable scale-up
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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Protocols
This page covers the use of Sepharose Fast Flow for purification of proteins.
This page clarifies sample preparation, buffer exchange and desalting, removal of lipoproteins, phenol red, and low molecular weight contaminants in Ion exchange chromatography.
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