AgaPure™ Agarose HR (High Resolution)

AgaPure™ Agarose HR (High Resolution)

Catalog Number:
EG01268461CAN
Mfr. No.:
AG008; AG009
Price:
$414
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      • Overview
        • AgaPure™ Agarose HR (High Resolution) is a high quality, Molecular Biology Grade Agarose, suitable for the separation of small DNA fragments and PCR products of between 20–800 bp. It allows the separation of DNA fragments differing by a molecular weight of 2% and provides a good alternative to polyacrylamide electrophoresis. In addition, AgaPure™ Agarose HR has an excellent clarity of gels at a concentration of as high as 5%. This provides electrophoresis results of a very good clarity. The melting and gelling point of the agarose which have lower values when compared to LE Agarose Standard and are higher than Agarose LM (Low Melting Point).

          Includes for 100 g:
          – 100 g AgaPure™ Agarose HR (High Resolution)

          Please contact us at for specific academic pricing.

      • Properties
        • Categories
          Molecular Biology Grade Agaroses
          Other Properties
          Appearance: White, fine, homogeneous, free flowing.
          Molecular Biology Grade.
          EEO ≤ 0.1
          Gel strength (1% gel) ≥ 750 g/cm2
          Fusion point (1.5% gel) ≤ 70°C
          Gelling point (1.5% gel) ≤ 33°C
          Ash ≤ 0.5%
          Moisture ≤ 10%
          Sulphate ≤ 0.1%
          Guaranteed to be free of DNA binders, inhibitors, DNases, and RNases.
          Storage
          Room Temperature (20 – 24 °C). Protect from moisture. Light Sensitive.

          * This product is developed, designed and sold exclusively for Research purposes and in vitro use only (RUO). The product was not tested for use in diagnostics or for drug development, nor is it suitable for administration to humans or animals.

      • Applications
        • Application Description
          Conventional and preparative Electrophoresis of DNA and RNA fragments.
          Ideal for PCR product separations.
          Purification of DNA fragments from the gel for further Molecular Biology applications.
          Analysis of AFLP (Amplified Fragment Length Polymorphisms)
          Analysis of STR (Short Tandem Repeats)
          Analysis of tri-/tetranucleotide repeats.

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