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MM Separator M12 + 12, P version
451,50 €/VE
Excl. btw | 1 stuks Per VE
Bestelnr. 2151.1
Geschikt voor / Toebehoren
Productdetails
Made from acrylic glas for optimal visual inspection needs, and from chemically resistant polyoxymethylene (POM) (versions “P”) for routine use of organic solvents.
MM-Separators are designed for optimal magnetic bead separation in terms of speed and bead pellet positioning, as well as stability and user-friendliness.
magtivio’s MM-Separators are intended for magnetic separation of MagSi beads from liquid samples for isolation and purification of nucleic acids and proteins, immunoprecipitation, immunoassays (ELISA), cell sorting, and purification of biomolecules.
MM Separator M12 + 12
MM-Separators M12 + 12 enable easy separation of beads from liquids for processing low amounts of samples with working volumes from 10 μl to 2 ml. In the centre, 12 magnets allow accommodation of up to 24 centrifuge tubes.
Application area: manual use with 1.5 and 2 mL microtubes.
Type | M12 + 12 P |
Aantal monsters max. | 24 |
L x B x H | 21.7 x 11.0 x 2.5 cm |
Gewicht | 0,7 kg |
- Tussentotaal: 0.00
Bestelnr. | Uitvoering | VE | Prijs | Hoeveelheid | |
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2138.1 | uncoated | 1 stuks |
451,50 € |
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2151.1 | P version | 1 stuks |
451,50 € |
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Op voorraad
Beschikbaar
In bestelling
Niet meer verkrijgbaar
Leveringsdatum onbekend
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- Tussentotaal: 0.00
Downloads / MSDS
Algemene informatie
Specific Application of Silica- and of Carboxylated Beads
Bead surface | Silica beads | Carboxylated beads |
Compatible Buffer Systems | Chaotropic buffers | PEG-based, low pH or chaotropic buffers |
Binding Mechanism | Precipitation with chaotropic salts | Precipitation by polymers like PEG, divalent cations (e.g. Mg2+) or chaotropic salts |
Elution | Low salt conditions | Low salt conditions or pH shift from acidic to alkalineconditions |
Recommended use | Recommended in case chaotropic conditions can be applied. | Recommended if flexibility in buffer systems is necessary or if non-chaotropic conditions have to be applied. Results in higher purity and recovery rate under non-chaotropic conditions. |