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ligand
butyl
包装
pack of 200 mL
メーカー/製品名
Cytiva 17-0980-01
Matrix
4% cross-linked agarose
粒径
45-165 μm
平均直径
90 μm
cleaning in place
2-14
動作範囲
3-13
適合性
suitable for bioprocess medium
関連するカテゴリー
詳細
アプリケーション
Butyl Sepharose™ 4 Fast FLow is based on cross-linked 4% Agarose. The aliphatic ligand is immobilized to the base matrix with an ether linkage. The ligand contains no charged groups, making true hydrophobic interaction chromatography possible, without interfering ionic effects.
Butyl Sepharose™ 4 Fast FLow is available in a range of different bulk pack sizes and convenient pre-packed formats for easy scale-up and process development. As member of the BioProcess media range, Butyl Sepharose™ 4 Fast FLow meets industrial demands with security of supply and comprehensive technical and regulatory support.
特徴および利点
- Standard aliphatic HIC media based on Sepharose™ Fast FLow base matrix derivatized via uncharged, chemically-stable ether linkages.
- Optimized for the separation of larger Proteins in capture and intermediate purification steps
- BioProcess medium supported for industrial applications and well-established in approved processes
- The hydrophilic nature of the base matrix ensures Low levels of non-specific binding.
保管および安定性
アナリシスノート
法的情報
シグナルワード
Warning
危険有害性情報
保管分類コード
3 - Flammable liquids
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資料
This section is about salt selection and buffer preparation in HIC medium from GE Healthcare, parameters such as buffer ions and pH are considered
This page discusses column packing and preparation techniques for reverse phase chromatography
This page discusses column packing and preparation techniques for reverse phase chromatography
Here the correct ways for Column, Media and Sample preparation for Hydrophobic Interaction Chomatography (HIC) with GE Healthcare media are detailed, including sample application, load volume and temperature
プロトコル
While ligands contribute significantly to the degree of hydrophobicity of a medium, the matrix can also influence the final selectivity. Chromatography media for hydrophobic interaction are made from porous matrices, chosen for their physical stability, their chemical resistance to stringent cleaning conditions and their low level of non-specific interaction.
While ligands contribute significantly to the degree of hydrophobicity of a medium, the matrix can also influence the final selectivity. Chromatography media for hydrophobic interaction are made from porous matrices, chosen for their physical stability, their chemical resistance to stringent cleaning conditions and their low level of non-specific interaction.
This page discusses various aspects of sample preparation for chromatographic purification.
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