Cytiva's Whatman™ 17-0489-01 Superose 6 PrepGrade, 125mL, Matrix: Highly Cross-linked Agarose, Storage: 4 to 30°C, 20% Ethanol

  • Particle Size1: 30µm-40µm, Matrix: Highly cross-linked agarose
  • pH stability, operational2: 3–12, pH stability, CIP3: 1–14
  • Fractionation range (Mr) (globular proteins): 5 × 10 ³–5 × 10⁶
  • Storage: 4 to 30°C, 20% Ethanol, High performanceGel filtration resin specially designed for preparative purification of biomolecules
  • Achieve high-resolution separations across exceptionally broad molecular-weight ranges
  • Sold Individually
  • Manufacturer Part No: WHA-17-0489-01
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Item Number: WHA-17-0489-01

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Good resolution separations of proteins and other biomolecules according to size, Wide separation range – separations in a molecular weight range from 5000 up to 5 million. Excellent reproducibility and durability Achieve high-resolution separations across exceptionally broad molecular-weight ranges Low ionic strength eluents (< 0.05 M) can utilize a hydrophobic interaction component to alter the selectivity of Superose for some lipids, peptides, and small aromatic compounds High performance gel filtration resin specially designed for preparative purification of biomolecules Superose 6 is designed for high-resolution chromatography. Superose 6 Prep Grade permits easy, efficient scale-up to preparative separations.

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Good resolution separations of proteins and other biomolecules according to size, Wide separation range – separations in a molecular weight range from 5000 up to 5 million. Excellent reproducibility and durability Achieve high-resolution separations across exceptionally broad molecular-weight ranges Low ionic strength eluents (< 0.05 M) can utilize a hydrophobic interaction component to alter the selectivity of Superose for some lipids, peptides, and small aromatic compounds High performance gel filtration resin specially designed for preparative purification of biomolecules Superose 6 is designed for high-resolution chromatography. Superose 6 Prep Grade permits easy, efficient scale-up to preparative separations.

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