Z741750
3-channel flow cell
Cell Only, γ-irradiated, Sealed
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About This Item
Productos recomendados
sterility
γ-irradiated
manufacturer/tradename
IBI ACCFL0001
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General description
The IBI 3-channel Flow Cell (formerly Stovall 3-channel Flow Cell) is designed as a one-time use, affordable, sterile 3-channel flow cell apparatus for the creation of biofilms. This device allows for real-time, direct, non-destructive, on-line examination of biofilms with either a traditional transmission light microscope or a scanning confocal laser microscope which will produce a 3-D image of the biofilm.
The 3-channel flow cell is gamma irradiated and comes complete with bubble trap (ACCFL0002) and peristaltic pump tubing and connective tubing. The 3-channel flow cell contains a #1 Glass cover slip. The underside of this cover slip is where the biofilm will attach and grow. When the experiment is complete, the cover slip is cut using a hand-held glass cutter (ACCFL0014) and removed along with the biofilm.
The 3-channel flow cell is gamma irradiated and comes complete with bubble trap (ACCFL0002) and peristaltic pump tubing and connective tubing. The 3-channel flow cell contains a #1 Glass cover slip. The underside of this cover slip is where the biofilm will attach and grow. When the experiment is complete, the cover slip is cut using a hand-held glass cutter (ACCFL0014) and removed along with the biofilm.
Features and Benefits
- The 3 separate channels allow for the simultaneous growth of 3 individual biofilms in the same cell.
- 3-channel cell only – No tubing included.
- Cell comes sterilized (gamma irradiated) and ready for use.
Certificados de análisis (COA)
Busque Certificados de análisis (COA) introduciendo el número de lote del producto. Los números de lote se encuentran en la etiqueta del producto después de las palabras «Lot» o «Batch»
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Applied microbiology and biotechnology, 104(3), 1259-1271 (2019-12-22)
The genomes of several Acinetobacter species possess three distinct polysaccharide-producing operons [two poly-N-acetyl glucosamine (PNAG) and one K-locus]. Using a microfluidic device, an increased amount of polysaccharides and enhanced biofilm formation were observed following continuous exposure to H2O2 and removal
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