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- 详细信息
- 文献和实验
- 技术资料
- 抗体英文名:
6-Tube Magnetic Separation Rack
- 保质期:
详见说明书
- 级别:
详见MSDS文件
- 供应商:
CST
- 库存:
大量
- 是否单克隆:
多克隆
- 保存条件:
-20°c
- 规格:
1 units
Product Pathways - Chromatin Regulation / Epigenetics
6-Tube Magnetic Separation Rack #7017
Description
The Magnetic Separation Rack is designed for quick and easy small-scale isolation of immunocomplexes from chromatin immunoprecipitations (ChIP assays) using SimpleChIP® Enzymatic Chromatin IP Kit (Magnetic Beads) #9003 or ChIP-Grade Protein G Magnetic Beads #9006. The rack holds up to six 1.5-2.0 ml tubes and contains three neodymium rare earth permanent magnets. Rare earth magnets are extremely powerful and should be kept away from mechanical/electrical instruments which may be damaged by high magnetic fields.
磁性分离架在染色质免疫沉淀中,用于快速容易的分离小规模免疫复合物。所用的试剂盒为SimpleChIP™ Enzymatic Chromatin IP Kit (Magnetic Beads) #9003 或 ChIP-Grade Protein G Magnetic Beads #9006。本磁性分离架可以放置6个1.5-2.0ml的管子,包含3个钕稀土永磁体,稀土永磁体具有超强的磁力,应远离具有磁性或电的设备,以防止在强磁场中遭到损坏。
Directions for Use
Place tubes containing magnetic beads in the Magnetic Separation Rack, wait 1 to 2 minutes for the solution to clear, and then carefully remove supernatant. Remove the tubes from the Magnetic Separation Rack, add new solution and resuspend the beads by gently vortexing or rocking the tube.
将含有磁珠的管子置于磁性分离架中,等1-2分钟至溶液澄清,然后小心移除上清。将管子从磁性分离架上移开,加入新的溶液重悬磁珠,轻轻涡旋或者摇动管子。
Companion Products
- 9003 SimpleChIP® Enzymatic Chromatin IP Kit (Magnetic Beads)
- 9006 ChIP-Grade Protein G Magnetic Beads
- 9005 SimpleChIP® Plus Enzymatic Chromatin IP Kit (Magnetic Beads)
- 8687 Protein A Magnetic Beads
- 8740 Protein G Magnetic Beads
Protocols
For Research Use Only. Not For Use In Diagnostic Procedures.
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文献和实验【资源】《Separation Methods in Proteomics》
Separation Methods in Proteomics edited by Gary B. Smejkal 2006年出版, 目录 Chapter 1 Applications of Pressure Cycling Technology (PCT) in 2DGE Chapter 2 Applications of Ion-Exchange Chromatography (IEX) to Reduce Sample Complexity
Magnetic Particle-Based Separation Techniques for Monitoring Bacteria from Natural Environments
or hamper microscopic observations. One approach that has proven feasible from environments as challenging as feces, plant tissue, or soil is the use of magnetic particle separation technology.
To shorten the time between brain harvesting and microglia isolation, and characterization, we utilized the MACS� neural dissociation kit followed by OctoMACS� CD11b magnetic bead isolation technique to positively select for brain microglia
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