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三用磁力架 适用生物磁珠分离 DNA核酸提取
三用磁力架 适用生物磁珠分离 DNA核酸提取
三用磁力架 适用生物磁珠分离 DNA核酸提取
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商品描述

商品属性

三用多孔磁力架

Cat. QYM02

产品描述:

此款架磁力架为全合金材质兼容1.5ml EP管,2ml EP管,0.2mlPCR管,0.2ml 8联排管和15ml离心管。

架身和磁铁部件采用拼插结合,并设计有定位孔;当匹配不同管子时,可以通过磁铁条的插入方向调节磁铁的吸附位置。

启研磁力架用于磁珠法分离样品。磁珠可用于分离细胞,蛋白,核酸,或其他生物样品。首先将磁珠与样品以适当的比例在管中混合。数分钟内,磁珠即可与样品中目的分子或细胞结合。之后将EP管置入磁场中,在磁力作用下,与磁珠结合的目的分子或细胞可吸附在管壁上。弃上清,获得被磁珠捕获的目标分子或细胞。经过反复的吸附洗脱等环节,即可实现对目标生物样本的分离纯化。当外加磁场移除后,磁珠即分散,不会残留磁性。启研磁力架可用于任何种类的磁珠分离。

 

产品特色:

规格: 1.5ml/2ml ×16孔;0.2ml×32孔;15ml×2孔

架子尺寸:160×38×33mm;重量345g。

全金属架子,结实耐用。孔采用倾斜设计,1.5ml和0.2ml的锥形管更贴合。

室温储存。-20℃-70℃之间保持性能稳定。

采用高于同行业标号的永磁铁,磁铁体积也更大(D15×20mm)。

 

清洁与消毒:

可用75%酒精或1%次氯酸钠消毒。消毒后及时擦干。不可浸泡于水或其他液体中。

提示:请勿高压。

 

保存与稳定性:

磁力架包含强力钕磁铁部件,其磁性可维持终身不会消退。建议保存于凉爽、干燥环境。请勿在超过70℃(122℉)的环境下使用。避免暴露于外加磁场下。避免日光或紫外灯直射,因UV会使其表面变脆弱。

 

警告:

磁力架包含强磁场。佩戴心脏起搏器或其他医疗磁场装置者请勿使用。使用时远离刀片,剪刀,镊子等钢铁器具。

 

 

Quayad(启研)three-purpose Porous Magnetic Separator Rack

Cat. QYM02

●Holds:16×standard 1.5ml/2.0ml or 32×0.2ml or 2×15ml centrifuge tubes

●SIZE:160×38×33mm; 345g

●All metal shelf, strong and durable. The hole is inclined and is more suitable for 1.5ml and 0.2ml centrifugal tubes.

●Store at ambient temperature,and temperature range that can be subjected to -20-70℃.

 

Product Description

The Porous Magnetic Separator Rack is made of all-alloy material, suitable for 1.5 ml EP tubes, 2 ml EP tubes, 0.2 ml PCR tubes, 0.2 ml 8-tubes and 15 ml centrifuge tubes. The frame body and the magnet parts are combined by splicing and are designed with positioning holes. When matching different tubes, the adsorption position of the magnet can be adjusted by the insertion direction of the magnet bar.

The Magnetic Separator Rack is used for sample separation by magnetic bead method. The magnetic beads can be used to isolate cells, proteins, nucleic acids or other biomolecules. The magnetic beads are mixed with the sample in the proper ratio in a centrifuge tube, and usually bind to the target biomolecules within a few minutes. The centrifuge tube is placed on the shelf, and the target molecule or cell combined with the magnetic bead can be adsorbed on the tube wall with the magnetic bead under the action of magnetic force. Discard the supernatant and obtain the target molecule or cell captured by the magnetic bead. After repeated adsorption and elution, the target biological samples can be separated and purified. When the magnetic field is removed, the magnetic beads are dispersed and no residual magnetism. These magnets can be used with all types of magnetic beads.

 

Precautions

These magnets contain very strong permanent magnets. People wearing a pacemaker or any other medical magnetized implant should not use this product unless advised by a health professional; the implant could be affected or damaged by exposure to a strong magnetic field. Keep tools and objects that could be damaged by the magnetic field out of the working area. This includes, but is not restricted to, credit cards and other products containing magnetic recording devices. Keep away from delicate instruments, watches, electronic equipment, displays and monitors. The magnet may attract steel or other magnetic material with high mechanical forces. Take care during handling. Avoid contact between two magnets. Do not pull the magnets apart if contact has been made; twist off to prevent damage to the unit or fingers.

 

Cleaning and Disinfection

The following materials are recommended for cleaning purposes. Spray and/or wipe the magnetic rack either with 70% alcohol, or 1% sodium hypochlorite solution (bleach). Do not submerge in aqueous solutions and avoid prolonged exposure to water or aqueous solutions. Clean with a damp cloth and mild detergent when exposed to harsh solvents.

 

Note: Do not autoclave the magnetic.

 

Storage and stability

The magnets contain high-energy Neodymium permanent magnets, and the magnetic strength will not diminish significantly during the lifetime of the product. Do not use the magnets above 70°C (122°F) and store in a cool, dry environment. Avoid prolonged exposure of the magnets to direct sunlight or artificial UV light as the surface material may become brittle.

  

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