ligand
iminodiacetic acid
包装
pack of 50 mL
制造商/商品名称
Cytiva 17-0575-01
基质
6% cross-linked agarose
粒径
45-165 μm
平均直径
90 μm
cleaning in place
2-14
working range
3-13
适用性
suitable for bioprocess medium
相关类别
一般描述
Chelating Sepharose™ Fast Flow is composed of cross-linked 6% agarose beads modified with iminodiacetic immobilized to the base matrix by stable ether linkages and sufficiently long spacer arms.
Chelating Sepharose™ Fast Flow is supplied free of metal ions, allowing the user to charge it with the most appropriate metal ion for purification of a target protein.
Chelating Sepharose™ Fast Flow is available in a range of different bulk pack sizes for easy scale-up and process development. As member of the BioProcess media range, Chelating Sepharose™ Fast Flow meets industrial demands with security of supply and comprehensive technical and regulatory support
特点和优势
- Uncharged IMAC resin allowing possibility to charge with your metal ion of choice for optimized selectivity
- Convenient purification of native and recombinant proteins
- As BioProcess medium it fulfills industrial demands for security of supply, robust performance and regulatory support.
- BioProcess medium supported for industrial applications and well-established in approved processes
储存及稳定性
分析说明
法律信息
警示用语:
Warning
危险声明
储存分类代码
3 - Flammable liquids
法规信息
商品
How to separate proteins and peptides with affinity for metal ions by immobilized metal chelate affinity chromatography.
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 Cytiva.
This page shows how to convert between flow velocity and volumetric flow rate in affinity chromatography of antibodies.
实验方案
Guide for separating poly(His) fusion proteins using affinity chromatography tags in various purification products.
Sample Preparation for Affinity Chromatography in Specific Groups of Biomolecules
本页展示了在亲和色谱中如何在线性流率和体积流率之间换算。
This page shows how to convert between linear flow and volumetric flow rates in affinity chromatography.
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