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CDUFBI0A1

Milli-Q

Biopak 纯化柱

Ultrafilter for the production of pyrogen-, nuclease-, protease- and bacteria-free water at the point of dispense of Milli-Q® IQ/IX/EQ systems

别名:

Biopak®终端过滤器

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About This Item

UNSPSC代码:
41104212
eCl@ss:
33050190
NACRES:
JA.13

物料

polysulfone filter

质量水平

包装

pkg of 1 unit

制造商/商品名称

BioPak®

技术

ELISA: suitable
PCR: suitable
cell culture | mammalian: suitable

相容性

for use with Milli-Q® EQ 7000
for use with Milli-Q® EQ 7008
for use with Milli-Q® EQ 7016
for use with Milli-Q® IX 7003
for use with Milli-Q® IX 7005
for use with Milli-Q® IX 7010
for use with Milli-Q® IX 7015
for use with Milli-Q® IQ 7000
for use with Milli-Q® IQ 7003
for use with Milli-Q® IQ 7005
for use with Milli-Q® IQ 7010
for use with Milli-Q® IQ 7015

运输

ambient

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一般描述

Biopak® Polisher 是一种超滤柱,设计用于以Milli-Q®纯化水生产适用于分子生物学、生物化学和细胞培养的水。经过验证,它可以连续使用90天。

应用

Biopak®精纯柱超滤装置适用于Milli-Q® IX 7003/05/10/15、Milli-Q® IQ 7000、Milli-Q® IQ 7003/05/10/15、Milli-Q® EQ 7000和Milli-Q® EQ 7008/16净水系统。 设计用于分子生物学、生物化学和细胞培养学(使用Milli-Q®纯净水时)等应用,Biopak®超滤装置可去除大分子和较大生物结构,例如细菌等。

Biopak® Polisher推荐用于各种需要控制细菌、热源、核酸酶和/或蛋白酶水平的实验室应用。
这包括小干扰RNA(siRNA)研究、RNA原位杂交、微阵列开发、或蛋白质合成机制的研究。

特点和优势

  • 最大限度降低核酸酶、蛋白酶、热原或细菌污染的风险。
  • 消除了对DEPC等有毒试剂的需求,从而提高安全性,节省时间并降低成本。
  • 底部尖端经重新设计,可安全地安装保护罩。
  • 易于维护:精纯柱易于安装替换;无需灭菌。
  • 用于将 RFID 与 POD 连接的 e-Sure 标签可在 POD 触摸屏界面上实现完全可追溯性(数据管理)和消耗状态自动监测。

其他说明

使用说明
生物截留:细菌和热原
作用机制:超滤
应用:细胞培养基、分子生物学
预期用途:减少生物负荷
使用说明:这一产品通过超滤中空纤维提供水过滤。请参阅产品包装插页“更换”部分。
储存声明:干燥储存
处置声明:根据国家、省市和当地适用法规处置。
  • 热原(内毒素)< 0.001 EU/mL
  • RNA 酶 < 1 pg/mL
  • DNA酶 < 5 pg/mL
  • 蛋白酶 < 0.15 μg/mL
  • 细菌 < 0.01 CFU/mL

法律信息

BIOPAK is a registered trademark of Merck KGaA, Darmstadt, Germany
Milli-Q is a registered trademark of Merck KGaA, Darmstadt, Germany

储存分类代码

11 - Combustible Solids


分析证书(COA)

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在文件库中查找您最近购买产品的文档。

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Detection and Quantification of MicroRNAs by Ligase-Assisted Sandwich Hybridization on a Microarray
Iizuka R, et al.
Microarrays, 1368 (2016)
Giacomo Reina et al.
Nanoscale, 10(13), 5965-5974 (2018-03-16)
Several studies have demonstrated the ability of graphene oxide (GO) to efficiently adsorb small-interfering RNA (siRNA) on its surface and to transport it into cells. However, studies on whether and how siRNA interacts with GO are still inconclusive. In this
Graphene oxide size and oxidation degree govern its supramolecular interactions with siRNA
Reina G, et al.
Nanoscale, 10(30), 5965-5974 (2018)
Ryo Iizuka et al.
Methods in molecular biology (Clifton, N.J.), 1368, 53-65 (2015-11-29)
Extracellular microRNAs (miRNAs) in body fluids have been identified as promising biomarkers for different human diseases. The high-throughput, multiplexed detection and quantification of these miRNAs are highly beneficial for the rapid and accurate diagnosis of diseases. Here, we developed a
Whole mount RNA-FISH on ovules and developing seeds
Bleckmann A and Dresselhaus T
Chemosphere, 159-171 (2017)

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