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Thermo Scientific™ Nitrocellulose Membranes, 0.2 μm
Nitrocellulose is a popular binding matrix for western blotting because of its high affinity for proteins and compatibility with a variety of detection methods (western blotting, dot-blot assays, and other protein or nucleic acid methods).
1386.00 SEK - 3450.00 SEK
Specifications
Format | Sheet |
---|---|
Material | Nitrocellulose |
Pore Size | 0.2 μm |
Shipping Condition | Room Temperature |
Product Code | Brand | Dimensions (LxW) | Format | Pore Size | Sufficient For | Price | Quantity & Availability | ||
---|---|---|---|---|---|---|---|---|---|
Product Code | Brand | Dimensions (LxW) | Format | Pore Size | Sufficient For | Price | Quantity & Availability | ||
10148113
|
Thermo Scientific™
88013 |
10.5 x 7.9 cm | Sheet | 0.2 μm | 15 Mini-gel Blots |
1558.00 SEK
Pack of 15 |
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10096363
|
Thermo Scientific™
88024 |
8 x 8 cm | Sheet | 0.2 μm | 15 Mini-gel Blots |
1386.00 SEK
Pack of 15 |
In Stock
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||
10561674
|
Thermo Scientific™
77012 |
12 x 8 cm | Sheet | 0.2 μm | 25 Mini-gel Blots |
3450.00 SEK
0.25kg |
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Description
Nitrocellulose is a popular binding matrix for western blotting because of its high affinity for proteins and compatibility with a variety of detection methods (western blotting, dot-blot assays, and other protein or nucleic acid methods). The 0.2-μm pore size is well-suited for western blotting, and this smaller pore size is ideal for the transfer of low molecular weight proteins or peptides and nucleic acids (<300 bp).
Features include:
100% pure nitrocellulose membrane
• Convenient—save time with pre-cut sheets
• Compatible with commonly used transfer conditions and detection methods such as staining, immunodetection, chemiluminescence, fluorescence, and radiolabeling
• High-binding affinity—provides excellent protein binding, blocks easily, and does not require pre-wetting with alcohol
• Low background—produce high-quality data with low background signal in both chemiluminescent and fluorescent western blotting
Specifications
Sheet | |
Nitrocellulose | |
0.2 μm | |
Room Temperature |