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About This Item
material
PTFE membrane, high-density polyethylene housing
sterility
non-sterile
product line
Millex™
feature
holdup volume< 10 μL, hydrophilic
manufacturer/tradename
Millex™
parameter
14 bar max. inlet pressure (200 psi), 45 °C max. temp.
technique(s)
LC/MS: suitable, UHPLC-MS: suitable, UHPLC: suitable, analytical sample preparation: suitable, mass spectrometry (MS): suitable
H
19.8 mm
diam.
4 mm
filtration area
0.1 cm2
volume
1 mL
pore size
0.2 μm
input
sample type aqueous solution(s)
sample type organic solution(s)
fitting
female Luer-Lok® inlet, male Luer outlet stepped slip
shipped in
ambient
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General description
• Lowest extractables, optimizing background levels of sensitive analyses like UHPLC and LC-MS
• Filtration of protein-containing solutions, and aqueous or organic solutions
• Available in 0.20 µm and 0.45 µm pore sizes and three diameters to suit your application needs
Available in Multiple Pack Sizes:
SKU ending with NS (-------NS): 50 per pack
SKU ending with NL (-------NL): 100 per pack
SKU ending with NB (-------NB): 250 per pack
SKU ending with NK (-------NK): 1000 per pack
SLCRT13NL: 100 per pack. These syringe filters have a tube outlet
Applications:
Sample Filtration Prior to UHPLC, HPLC and Mass Spec; Solvent Filtration; Clarification of Aqueous and Organic Solutions
Application
Features and Benefits
Packaging
Physical form
Legal Information
Certificates of Analysis (COA)
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Articles
The possible causes and potential remedies for challenges encountered as a result of blocking, washing, antibody incubation, and detection/exposure of Western blots
Prior to probing a membrane using precious antibodies, it is helpful to visualize the transferred proteins on the blot to ensure complete transfer and even loading. This page describes possible causes and potential remedies for challenges encountered during protein visualization.
Millex® hydrophilic PTFE syringe filters offer broad chemical compatibility and robust performance for various sample filtrations.
Improve your mass spectra with strategies to optimize sample preparation in protein and small molecule mass spectrometry.
Related Content
"Liquid chromatography mass spectrometry (LC-MS) and gas chromatography mass spectrometry (GC-MS) are being increasingly used in analysis of samples, not only in the biotechnology and pharmaceutical industries, but also more generally in the analysis, identification and quantitation of complex samples containing low levels of analytes. The advantages of LC-MS or GC-MS over other analytical techniques include high sensitivityand specificity for analyte detection and quantitation."
Because of its high sensitivity and extreme versatility, mass spectrometry has become a popular technique for identifying and quantifying molecules within complex mixtures, in diverse research areas that range from systems biology and proteomics to environmental analysis. Successful mass spectrometry requires extremely areful sample preparation, in order to avoid complexity of the mixtures being analyzed. EMD Millipore supports researchers using mass spectrometry with tools or multiple steps of the workflow, including purification, clarification, and analysis.
Our team of scientists has experience in all areas of research including Life Science, Material Science, Chemical Synthesis, Chromatography, Analytical and many others.
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