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Invitrogen™ E-Gel™ 96 Agarose Gels

Invitrogen E-Gel 96 high-throughput precast agarose gels with or without SYBR Safe DNA gel stain are designed for fast, convenient, and safe DNA sample electrophoresis.

Brand:  Invitrogen™ G700802

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Product Code. 11574866

  • 286.00 EUR / Pack of 8
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Includes: Each box of E-Gel 96 gels contains 8 gels and a manual.
This item is not returnable. View return policy

Description

Description

Invitrogen E-Gel 96 high-throughput precast agarose gels with or without SYBR Safe DNA gel stain are designed for fast, convenient, and safe DNA sample electrophoresis. Each E-Gel agarose gel cassette contains all components required for efficient gel separation and analysis—just load your samples and run.

Invitrogen E-Gel 96 high-throughput precast agarose gels with or without SYBR Safe DNA gel stain are designed for fast, convenient, and safe DNA sample electrophoresis. Each E-Gel agarose gel cassette contains all components required for efficient gel separation and analysis—just load your samples and run.

Each gel contains 96 sample lanes and 8 marker lanes, ideal for screening multiple PCR products, plasmid preparations, and restriction digests. The E-Gel 96 loading format is compatible with multi-channel pipettors and the most commonly used 8-, 12-, and 96-pin liquid handling robots. With a 12-minute run time, up to 20,000 samples can be resolved in a single day.

The unique 96-well staggered-well format provides a 1.6-cm run length with the following separation ranges for DNA fragments:

  • 1% agarose gels: DNA fragments between 400 bp and 10 kb
  • 2% agarose gels: DNA fragments between 100 bp and 2 kb

Each cassette is labeled with an unique EAN39 bar code that is recognized by most commercially available robotic bar code readers.

Features of E-Gel 96 gels include:

  • High throughput analysis—contain 96 sample lanes and 8 marker lanes
  • Automation compatible—suitable for use with multi-channel pipettors and commonly used 8-, 12-, and 96-pin liquid handling robots
  • Scalable—resolve up to 384 samples in one run by combining up to four E-Base Mother and E-Base Daughter devices
  • Safer choice—contains SYBR Safe DNA stain, a safer alternative to ethidium bromide
  • High performance—detect 3 ng of sample DNA with a separation time as short as 12–17 minutes

Safer option

Choose SYBR Safe DNA stained gels to minimize exposure to hazardous and mutagenic factors such as ethidium bromide or UV. Precast E-Gel agarose gels with SYBR Safe, in combination with blue-light trans-illumination, offer better sample integrity and a safer work environment.

Unlike ethidium bromide, the DNA stain most commonly incorporated into agarose gels, SYBR Safe DNA Gel Stain is a non-toxic, non-mutagenic DNA stain that is safer for the user, safer for the environment, and can save institutional overhead costs for disposal.

Fast and convenient analysis

E-Gel agarose gels enable fast and high-performance analysis with a detection sensitivity of 3 ng of sample DNA per band and a separation time 2–3 fold faster than that of conventional pour-your-own gels. Each E-Gel agarose gel contains agarose, electrodes, SYBR Safe DNA stain, and a buffer-less ion exchange system packaged inside a dry disposable cassette. E-Gel technology does not require any gel or buffer preparation or gel staining steps. Just load your samples and run.

Running and imaging devices

High-throughput E-Gel agarose gels require the E-Base Electrophoresis Device for gel running.

Available in a variety of gel formats

E-Gel agarose gels are available in variety of gel percentage, stain, and well formats. The high-throughput E-Gel 96 and 48 agarose gels with or without SYBR Safe are available in 1% and 2% gel percentages.

Order Info

Shipping Condition: Room Temperature

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Specifications

Specifications

Each box contains 8 gels and a manual
  • Store at room temperature.
    E-Gel
    100 to 2000 bp
    96-well
    Room Temperature
    2%
    Agarose Gel
    Ethidium Bromide
    8 Gels
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    For Research Use Only. Not for use in diagnostic procedures.