9568005

Invitrogen™ SuperScript™ IV RT-LAMP Master Mix

Invitrogen SuperScript IV RT-LAMP Master Mix is a ready-to-use solution optimized for fast, sensitive, and simple RNA target detection in loop-mediated isothermal amplification (LAMP) reactions.

Manufacturer: Fischer Scientific

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Product Type

Master Mix

Polymerase

Bst DNA Polymerase

Reverse Transcriptase

SuperScript IV

Includes Label or Dye

SYTO 9 Green Fluorescent Nucleic Acid Stain

Reaction Time

5 to 15 minutes

For Use With (Application)

LAMP, RT-LAMP

Optimal Reaction Temperature

65°C

Shipping Condition

Dry Ice

Concentration

2X

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Description

  • Invitrogen SuperScript IV RT-LAMP Master Mix is a ready-to-use solution optimized for fast, sensitive, and simple RNA target detection in loop-mediated isothermal amplification (LAMP) reactions
  • With this convenient master mix formulation, you can perform isothermal amplification from both RNA or DNA targets in a single tube format
  • Benefits of SuperScript IV RT-LAMP Master Mix • RNA and DNA target detection using Bst DNA polymerase for isothermal amplification in as little as five minutes • Robust and specific cDNA synthesis using SuperScript IV Reverse Transcriptase • Enhanced specificity and sensitivity with buffer formulation and RNaseOUT recombinant ribonuclease inhibitor • Compatible with real-time and endpoint detection—includes SYTO 9 dye for real-time detection • Flexible design provides several options for evaluating results, including real-time and endpoint detection methods SuperScript IV RT-LAMP Master Mix includes an evolved Bst DNA polymerase mutant with a fast reaction speed and increased sensitivity and tolerance to inhibitors, as well as SuperScript IV Reverse Transcriptase with increased processivity, thermostability, and inhibitor resistance
  • To prevent RNA degradation by carry-over RNases, the master mix includes the potent, noncompetitive RNaseOUT Recombinant Ribonuclease Inhibitor
  • Our proprietary reaction buffer composition is optimized to increase specificity by delaying no-template control (NTC) amplification time.