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Gel Packs
10-Pack Precast Gels for G48 and G96, available in 6% or 10% Acrylamide

Gel Packs

Build your own 10-pack of G-Blot precast gels — choose any combination of G48 and G96 formats across 6% and 10% acrylamide concentrations.

Gel Packs
10-Pack Precast Gels for G48 and G96, available in 6% or 10% Acrylamide
Gel Packs
10-Pack Precast Gels for G48 and G96, available in 6% or 10% Acrylamide

Key Features

Product Details

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    G48 6% — suitable for proteins between 50 and 250 kDa
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    G48 10% — suitable for proteins between 25 and 100 kDa
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    G96 6% — suitable for proteins between 50 and 250 kDa
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    G96 10% — suitable for proteins between 25 and 100 kDa

Specifications

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    Quantity: 10 gels per pack.
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    G48 dimensions: 128 × 86 mm.
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    G96 dimensions: 128 × 86 mm.
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    Well volume: 56 µL.
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    Recommended sample volume: 10–25 µL.
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    Shelf life when stored at 4°C: 1 year from casting date.

Need answers?

Frequently Asked Questions

How long are the gels stable?
Our precast gels are stable for at least 1 year from the casting date, denoted on each gel as the expiration date.
Are custom gels available?

Yes, gels can be customized with different amounts of acrylamide depending on your protein separation needs.

Please contact us for any custom requirements and we will be happy to investigate possibilities.

What power supplies are compatible with the HT-1?
The HT-1 is compatible with standard lab power supplies using banana plugs. Recommended specifications include adjustable voltage and current up to 100 V and 400 mA, and at least 75 W of power.
What transfer methods are compatible with the G-Blot?
You can use either semi-dry or wet transfer, as long as your transfer unit is the right size.
Should I use nitrocellulose or PVDF membranes for transfer?

Both membrane types are compatible with the G-Blot. The best membrane for your experiment will depend on your target proteins, detection methods, and antibodies.

How is the sensitivity compared to a traditional western blot?

The G-Blot has equivalent sensitivity to a traditional western blot (Birtwistle et al., 2025).

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