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NACRES:
NB.01
UNSPSC Code:
41121601
Volume:
100—1000 μL
Sterility:
sterile
Feature:
DNase free, RNase free
Packaging:
pack of 800 ea
Manufacturer/tradename:
Molecular BioProducts 2279
material
colorless
sterility
sterile
feature
DNase free, RNase free
packaging
pack of 800 ea
manufacturer/tradename
Molecular BioProducts 2279
technique(s)
PCR: suitable
maximum volume
1 mL
volume range
100-1000 μL
volume
100—1000 μL
compatibility
for use with
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General description
Achieve precision in your applications with ART® self-sealing barrier pipette tips. These tips effectively seal when encountering potential contaminants, securely trapping them within the barrier. Designed to support various pipetting needs, ART barrier specialty tips are suitable for a wide range of applications.
Application
ART® self-sealing barrier pipette tips are suitable for use in:
- Forensics
- General PCR work
- Radioisotope sampling
- Genetic studies
ART® self-sealing barrier pipette tips have been used for the quantitative profiling of endocannabinoids in lipoproteins by LC–MS (liquid chromatography–mass spectrometry)/MS. They have also been used for RNA isolation and reverse transcription.
Features and Benefits
- Free of DNase, RNase, DNA, ATP, PCR inhibitors, and endotoxins.
- Available in a wide range of options including sterile, non-sterile, and various packaging options.
- Manufactured in compliance with the industry′s highest quality standards.
Packaging
960EA = 10 trays of 96 tips (1 pack)
4800EA = 5 packs of 960 tips (50 trays of 96 tips)
800EA = 8 trays of 100 tips (1pack)
3200EA = 4 packs of 800EA
4800EA = 5 packs of 960 tips (50 trays of 96 tips)
800EA = 8 trays of 100 tips (1pack)
3200EA = 4 packs of 800EA
Other Notes
Browse all pipette tips
Legal Information
ART is a registered trademark of Molecular BioProducts, Inc.
In vitro culture and analysis of adult hippocampal neural progenitors.
Peltier J, et al.
Methods in Molecular Biology, 621, 65-87 (2010)
Quantitative profiling of endocannabinoids in lipoproteins by LC-MS/MS.
Bilgin M, et al.
Analytical and Bioanalytical Chemistry, 407, 5125-5131 (2015)
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