Cytiva's Whatman™ 10600058 Amersham™ Hybond® P 0.2µm PVDF Western Blotting Membrane, 200 x 200mm, Steam Autoclavable (Pack of 10)

  • Material: Polyvinylidene difluoride (PVDF), Pore Size: 0.2µm, Dimensions: 200mm × 200mm
  • Binding Capacity: 363-430µg IgG/cm² (incubation method) 167-199µg BSA/cm² (incubation method)
  • High protein binding capacity for easy signal detection
  • High protein retention even after harsh washing steps
  • Maximum capture of proteins during transfers minimizes sample loss
  • Pack of 10
  • Manufacturer Part No: WHA-10600058
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Item Number: WHA-10600058
$395.63

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0.2µm PVDF blotting membrane for use with standard colorimetric and chemiluminescent detection methods. High protein binding capacity for easy signal detection. High protein retention even after harsh washing steps. Maximum capture of proteins during transfers minimizes sample loss. 0.2 μm pore size for higher surface area, resulting in better binding of low molecular weight proteins. Available in popular precut sizes for laboratory applications. Minimizes "blow-through" and increases protein binding Amersham Hybond P 0.2 PVDF is a 0.2 μm pore size hydrophobic membrane with high physical strength. This results in significant handling advantages over unsupported nitrocellulose and makes the membrane highly suitable for stripping and reprobing. The small pore size of the membrane minimizes "blow-through" and increases protein binding over a wide range of molecular weights

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0.2µm PVDF blotting membrane for use with standard colorimetric and chemiluminescent detection methods. High protein binding capacity for easy signal detection. High protein retention even after harsh washing steps. Maximum capture of proteins during transfers minimizes sample loss. 0.2 μm pore size for higher surface area, resulting in better binding of low molecular weight proteins. Available in popular precut sizes for laboratory applications. Minimizes "blow-through" and increases protein binding Amersham Hybond P 0.2 PVDF is a 0.2 μm pore size hydrophobic membrane with high physical strength. This results in significant handling advantages over unsupported nitrocellulose and makes the membrane highly suitable for stripping and reprobing. The small pore size of the membrane minimizes "blow-through" and increases protein binding over a wide range of molecular weights

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