Application
Amersham™ Protran® Premium Western blotting membranes, nitrocellulose may be used in:
- Western blotting
- Southern blotting
- Northern blotting
Features and Benefits
- High binding capacity (162 – 180 µg IgG/cm2).
- Suitable for proteins of a wide range of molecular weights.
- Unsupported, 100% pure nitrocellulose membrane for use with all ECL Western blotting systems and protein blotting applications.
- Available in popular precut sizes for laboratory application.
General description
Nitrocellulose blotting membrane for excellent sensitivity.
Excellent sensitivity, resolution and low background
Amersham Protran Premium offers excellent sensitivity, resolution, and low background, especially when used with the fluorescence Amersham ECL Plex Western blotting detection system.
Western blotting sandwiches
For convenience, Western blotting sandwiches (10 sandwiches/package) are available, consisting of precut Amersham Protran Premium NC membranes preassembled with 2 x 3 mm Chr blotting papers.
Excellent sensitivity, resolution and low background
Amersham Protran Premium offers excellent sensitivity, resolution, and low background, especially when used with the fluorescence Amersham ECL Plex Western blotting detection system.
Western blotting sandwiches
For convenience, Western blotting sandwiches (10 sandwiches/package) are available, consisting of precut Amersham Protran Premium NC membranes preassembled with 2 x 3 mm Chr blotting papers.
Preparation Note
Please be aware this product may be shipped 90 days before the expiration date. For more information on the batch specific expiration date, please contact technical service.
Legal Information
Amersham is a trademark of Cytiva
Protran is a registered trademark of Cytiva
Marina Aznaourova et al.
Proceedings of the National Academy of Sciences of the United States of America, 117(16), 9042-9053 (2020-04-04)
RNA has been proposed as an important scaffolding factor in the nucleus, aiding protein complex assembly in the dense intracellular milieu. Architectural contributions of RNA to cytosolic signaling pathways, however, remain largely unknown. Here, we devised a multidimensional gradient approach
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