FERB13880C

Thermo Scientific™ Co-factors

Manufacturer: Fischer Scientific

Select a Size

Pack Size SKU Availability Price
Each of 1 FERB13880C-Each-of-1 In Stock ₹ 4,000.55

FERB13880C - Each of 1

₹ 4,000.55

In Stock

Quantity

1

Base Price: ₹ 4,000.55

GST (18%): ₹ 720.099

Total Price: ₹ 4,720.649

Chemical Name or Material

S-Adenosyl-L- Methionine (SAM)

Concentration

5 mM

No. of Reactions

100 Reactions

Quantity

800 μL

Content And Storage

5 mM SAM, 800 μLStore at -20°C.

Format

Vial

Product Type

Methyl Group Donor

Form

Liquid

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Description

  • Thermo Scientific enzymes for in vitro transcription are designed for efficient and reliable RNA synthesis
  • These enzymes cover the entire synthesis workflow from template preparation to post-transcriptional modifications, ensuring optimal performance and high yields of synthesized RNA
  • High quality RNA synthesized by in vitro transcription is essential for RNA research and this versatile technique can be used in a variety of applications including the introduction of modified nucleotides into RNA transcripts for enhanced translational capacity and reduced immune activity of the cells
  • Thermo Scientific enzymes for in vitro transcription are designed for efficient and reliable RNA synthesis
  • These enzymes cover the entire synthesis workflow from template preparation to post-transcriptional modifications, ensuring optimal performance and high yields of synthesized RNA
  • High quality RNA synthesized by in vitro transcription is essential for RNA research and this versatile technique can be used in a variety of applications including the introduction of modified nucleotides into RNA transcripts for enhanced translational capacity and reduced immune activity of the cells
  • Features Convenient stand-alone enzymes and buffers for workflow optimization No animal-origin components in final product composition Reliable and reproducible results with rigorous quality testing Scalable and available as OEM products Applications CRISPR/Cas-based genome editing Gene expression Generation of pluripotent cells