"bead hammer"
Iodination beads, Pierce™
Supplier: Thermo Fisher Scientific
Pierce™ Iodination beads are Ø 3 mm polystyrene beads that are coated with an oxidising reagent, which provides efficient activation of 125I for protein or peptide iodination procedures.
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Disruptor Beads™ for Disruptor Genie®
Supplier: SCIENTIFIC INDUSTRIES ELMIS
Glass beads are designed for use with the Disruptor Genie™ or TurboMix™ attachment for optimum disruption of bacteria, yeast, fungi and other cells.
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ROBU® VitraPOR® Porous Glass Beads
Supplier: ROBU GLASFILTER
Substrate for cell cultivation.
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Ni-NTA magnetic agarose beads, Pierce™
Supplier: Thermo Fisher Scientific
These magnetic agarose beads consist of highly crosslinked agarose beads embedded with magnetite and a covalently attached tetradentate nitrilotriacetic acid (NTA) chelator charged with divalent nickel ions. They provide a fast, convenient method for purification of His-tagged recombinant proteins.
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Grinding balls for planetary mills, PULVERISETTE Classic Line
Supplier: FRITSCH
Grinding balls, Agate, Ø: 20 mm, For use with: PULVERISETTE 6, PULVERISETTE 5/4, PULVERISETTE 5/2, PULVERISETTE 4 classic lines
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Protein G Mag Sepharose
Supplier: Cytiva
Protein G Mag Sepharose simplifies enrichment of target proteins by immunoprecipitation techniques, protein antigen precipitation from solutions using antibodies, or pull-down applications as an in vitro technique to detect physical interactions.
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Sera-Mag carboxylate-modified magnetic beads and SpeedBeads
Supplier: Cytiva
Sera-Mag Carboxylate-Modified Magnetic Beads & SpeedBeads have free carboxyl groups on the surface for convenient covalent coupling of target molecules (proteins, peptides, and amine-modified ligands) via primary amines (NH2).
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Accessories for mallets, Aesculap®
Supplier: Aesculap
Set of spare nylon inserts, Aesculap®
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Magnetic beads, Sera-Mag Oligo (dT) coated magnetic particles
Supplier: Cytiva
Sera-Mag Oligo(dT)-Coated Magnetic Particles enable convenient mRNA isolation and extraction. Sera-Mag Oligo(dT) Magnetic Particles bind target mRNA through pairing of the polyadenylated RNA tail found on the 3' end of mRNA to the covalently bound oligo(dT) groups on the surface of the particles. This binding is easily accomplished using standard hybridisation conditions. Versatile and efficient methods for mRNA purification are critical, given that eukaryotic mRNA makes up only 1 to 3% of total cellular RNA. Sera-Mag Oligo(dT) magnetic particles remove 90% or more of mRNA from total RNA with just one extraction.



