Skip to main content
Exclusive Savings: Take 10% OFF All Cenmed Products | Upgrade Your Lab For Less Shop Now
US English

GVS LIFE SCIENCES

PVDF 0.45 micron 30CM X 3M WL,FLT, ROL

FLT,ROL,PVDF 0.45 micron 30CM X 3M WL

Description
Polyvinylidene Fluoride Transfer Membrane Naturally hydrophobic Unsupported transfer membrane Reproducible, consistent results with maximum sensitivity Naturally hydrophobic, unsupported polyvinylidene fluoride transfer membrane is designed to deliver the highest binding capacity combined with low backgrounds in western transfer, amino acid analysis and protein sequencing applications. Exceptional quality control procedures throughout the manufacturing process eliminates "lot-to-lot" variation and minimizes "bald spot" problems. PVDF-Plus assures reproducibe results. Protein can be electroblotted from a variety of gel matricies onto PVDF-Plus. Because of its high sensitivity and strong binding affinity, protein will not pass through the membrane. The chemical compatibility of PVDF-Plus allows the use of all commonly used stains such as: Amido Black, Colloidal Gold, Coomassie Blue, India Ink and Ponceau-S. Will not degrade, distort or shrink when using high concentrations of methanol for destaining. Exhibits efficient transfer of proteins in a wide range of molecular weights, from 5k daltons to 700k daltons. The binding capacity averages 125 µg/cm 2 for larger globular proteins such as immunoglobulins and higher binding capacities for small peptides. All membranes have 0.45 µm pore sizes. Available in sheets and rolls.
Specifications
UPC:
41102916
Condition:
New
Weight:
1.00 Ounces
HazmatClass:
No
Quantity:
1
Unit of Measurement:
EA
WeightUOM:
LB
MPN:
1212639WL
Model Number:
22A00A046
Catalog No. C003B-003743
Price: $739.57
List Price: $821.75
  • Guaranteed quality & reliable delivery
  • Shipping Lead-Time: 3 Days
Adding to cart… The item has been added
Request a Quote

Enjoy exclusive benefits, including discounted pricing on bulk orders, by opening a Cenmed Business Account. Learn More.