Highly sensitive transfer membranes use capillary action methods to separate DNA, RNA, or protein fragments for detection. Working well with the gels and buffers required for transfer and immobilization steps, the transfer membranes are durable enough to be subjected to multiple stripping, reprobing, hybridization cycles. The high-binding discs, sheets, and rolls come in various pore sizes and charges to fit any blotting techniques in molecular biology and genetic research.
Biodyne® Nylon Transfer Membranes
Supplier: CYTIVA PALL
Biodyne® Transfer Membranes offer high sensitivity and low background for enhanced detection and resolution. They are ideal for nucleic acid detection.
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Transfer membranes, PVDF, Owl™, Immobilon-P™
Supplier: THERMO OWL SCIENTIFIC
Hydrophobic polyvinylidene fluoride transfer membrane has a high signal-to-noise ratio, which allows for the use of mild blocking procedures
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FluoroTrans® PVDF Transfer Membranes
Supplier: CYTIVA PALL
Naturally hydrophobic PVDF, ideal for a wide variety of protein-analysis applications. The family of FluroTrans® media are white, microporous solid phase supports that bind proteins tenaciously via hydrophobic interactions. FluoroTrans® membrane is optimised for N-terminal protein sequencing. FluoroTrans® W membranes are optimised for Western transfer applications. They allow for sensitive protein detection with low background and very low protein burn-through. Immobilised proteins can be visually detected with Coomassie® Blue, Amido black, Ponceau S, and colloidal gold.
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Whatman™ Protran® BA85 & BA83 NC Western Blotting Membranes, Nitrocellulose
Supplier: CYTIVA WHATMAN
Protran® membranes are manufactured from 100% pure nitrocellulose to ensure the highest binding capacity possible. They are compatible with a variety of detection methods, including isotopic, chemiluminescent, colorimetric and fluorescent. No methanol pre-wetting step is required, making this the membrane of choice for proteins which prefer aqueous environments. Prior to transfer the membrane is simply wetted with water, and then placed in the transfer buffer. No other pre treatment steps are necessary.
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Amersham™ Protran® Western Blotting Membranes, Nitrocellulose
Supplier: GE HEALTHCARE
Amersham™ Protran® membranes are manufactured from 100% pure nitrocellulose to ensure the highest binding capacity possible. They are compatible with a variety of detection methods, including isotopic, chemiluminescent, colorimetric and fluorescent. No methanol pre-wetting step is required, making this the membrane of choice for proteins which prefer aqueous environments. Prior to transfer the membrane is simply wetted with water, and then placed in the transfer buffer. No other pretreatment steps are necessary.
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Blotting membranes, Amersham™ Hybond™-N+
Supplier: GE HEALTHCARE
Amersham™ Hybond™-N+ is a positively charged nylon membrane with a binding capacity for nucleic acids up to 600 µg/cm² recommended for use with radioactive or non radioactive chemiluminescence and chemifluorescence detection systems.
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Blotting membranes, Nytran® N, Whatman™
Supplier: CYTIVA WHATMAN
The Nytran® Nylon (Nytran® N) membrane is ideal for applications that require a lower charge. It is designed for Southern and Northern blotting as well as colony and plaque lifts and Dot or Slot Blots. Nytran® N is compatible with isotopic detection methods.
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Blotting membranes, Nytran® SuPerCharge, Whatman™
Supplier: CYTIVA WHATMAN
Nytran® SuPerCharge (SPC) nylon membranes have a very high positive charge and a higher density of nylon per unit area. Available as circles, sheets or rolls for microplates.
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Blotting membranes, Amersham™ Hybond™ ECL™
Supplier: GE HEALTHCARE
Hybond™ ECL™ gives excellent sensitivity, resolution, and low background for all labelling and detection systems (radioactive, non radioactive, and chromogenic), especially when used with ECL™, ECL™ Prime, and ECL™ Plex Western Blotting Detection kits and reagents. Special packaging features include interleaf on both sides of the membrane and air-tight resealable aluminium bag with label space for marking the 'opened on' date.