产品名称
Eppendorf® DNA LoBind管, capacity 5 mL, cap (screw cap), PCR clean, case of 200 ea (2 bags of 100 Tubes each)
feature
PCR clean
cap (screw cap)
packaging
case of 200 ea (2 bags of 100 Tubes each)
manufacturer/tradename
Eppendorf® 0030122348
capacity
5 mL
storage temp.
room temp
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Features and Benefits
大幅减少样品与表面吸附,确保最大限度回收 DNA 和 RNA 分子
- Designed to meet rigorous demands for centrifugation, temperature resistance, and chemical compatibility.
- Equipped with a secure screw cap.
- Designed with a graduation feature to indicate the filling quantity, along with a labeling area for easy sample identification.
- The tubes are certified to be human DNA, DNase, RNase, and PCR inhibitors (PCR clean) free.
General description
最大限度回收核酸。 Eppendorf LoBind 管大幅减少样品与表面吸附,确保最大限度回收 DNA 和 RNA 分子。样品制备和长期储存珍贵核酸的理想解决方案
Eppendorf LoBind® Tubes are made from a special polymer and the LoBind material helps to enhance the recovery rate of samples. These single-use tubes, made from polypropylene, are ideal for a wide range of applications such as sample preparation, mixing, centrifugation, transportation, and storage of solid and liquid samples and reagents. Eppendorf LoBind® Tubes are available in two product versions:
- Eppendorf Protein LoBind is specifically designed for the preparation and storage of protein, peptide, antibody, or virus samples.
- DNA LoBind is suitable for DNA or RNA applications in forensic analysis, microarrays, and next-generation sequencing.
Application
Eppendorf® DNA LoBind, Eppendorf Tube® has been used for cDNA purification using magnetic beads.
Legal Information
Eppendorf is a registered trademark of Eppendorf AG
Eppendorf LoBind is a registered trademark of Eppendorf AG
Eppendorf Tube is a registered trademark of Eppendorf AG
法规信息
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Erik S Schild et al.
STAR protocols, 2(2), 100411-100411 (2021-04-20)
RNA tomography or tomo-seq combines mRNA sequencing and cryo-sectioning to spatially resolve gene expression. We have adapted this method for the nematode Caenorhabditis elegans to generate anteroposterior gene expression maps at near-cellular resolution. Here, we provide a detailed overview of
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