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Supplier: Cytiva
Description: Amersham Hybond P 0.45 PVDF is a 0.45 μm pore size hydrophobic membrane, with high physical strength, highly suitable for stripping and reprobing. Membranes provide excellent performance in fluorescent and chemiluminescent applications.

Supplier: Cytiva
Description: Amersham™ Protran® Supported is a robust protein blotting membrane, with 0,2 µm pore size, made of reinforced nitrocellulose for multiple reprobings.
Supplier: Cytiva
Description: Amersham™ Protran® Premium nitrocellulose blotting membranes provide excellent sensitivity, resolution and low background in fluorescence Western blotting detection applications.
Supplier: Thermo Scientific
Description: Nitrocellulose membranes are sheets and rolls of nitrocellulose, available in two pore sizes, that have excellent binding properties for Western blotting, dot-blot assays and other protein or nucleic acid methods.

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Supplier: Cytiva
Description: 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.
Supplier: Cytiva
Description: 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. Ideal for use with standard colorimetric and chemiluminescent detection methods for proteins of <Mr 20000.
Supplier: Cytiva
Description: Whatman Nytran nylon membranes are available in two formats: Nytran N is moderately charged and Nytran SuPerCharge (SPC) has a very high positive charge.
Catalog Number: (10128-706)
Supplier: QUALITY BIOLOGICAL, INC.
Description: TRIS Glycine Transfer Buffer, 10X (Transblot Buffer, 10X).

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Catalog Number: (CA10061-210)
Supplier: Cytiva
Description: 0.2 µm pore size for higher surface area, resulting in better binding of low molecular weight proteins. Amersham Hybond SEQ 0.2 PVDF is a 0.2 µm pore size hydrophobic membrane designed specifically for protein sequencing applications. The small pore size of this membrane minimizes ‘blow-through’ and increases protein binding over a wide range of molecular weights.

Catalog Number: (CA82023-288)
Supplier: G-Biosciences
Description: G-Biosciences' Nitrocellulose Membranes were made for the user's convenience, with pre-cut transfer membranes and padding for Western blot transfer procedures

SDS


Supplier: Cytiva
Description: 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.
Supplier: G-Biosciences
Description: G-Biosciences' PVDF (Polyvinylidene difluoride) Membranes were made for the user's convenience, with pre-cut transfer membranes and padding for Western blot transfer procedures

Supplier: Environmental Express
Description: Convenient filtration without a transfer step.

Supplier: Thermo Fisher Scientific
Description: Rapidly transfer proteins or nucleic acid molecules from polyacrylamide or agarose gels to membranes

Catalog Number: (76414-792)
Supplier: Azure Biosystems
Description: The Azure Aqua transfer cell is used for transferring two mini gels to membranes for Western blotting experiments (wet transfer).


Catalog Number: (89138-972)
Supplier: Biotium
Description: The DiO/DPA system detects cytoplasmic membrane potential changes using the principle of fluorescence resonance energy transfer (FRET), where DiO is a “stationary” FRET donor while DPA acts as a potentiometric FRET acceptor. The DiO/DPA system has been reported to produce a fluorescence signal change of >56% in HEK-293 cells and >25% in neuronal cultures and brain slices per 100 mV membrane potential change.


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