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C9H13N3Na3O14P3 MRNA Vaccine Raw Materials Cytidine-5'-Triphosphate Trisodium Salt

Product Details

Place of Origin: China

Brand Name: HUANA

Certification: ISO9001

Model Number: C-008

Payment & Shipping Terms

Minimum Order Quantity: 1ml

Packaging Details: 1ml, 10ml,100ml, 500ml

Delivery Time: 4-8 work days

Payment Terms: T/T

Supply Ability: 8,000 Litres/per year

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Specifications
Highlight:

mRNA Vaccine Raw Materials Cytidine-5'-Triphosphate

,

mRNA Vaccine Raw Materials Trisodium Salt

,

MRNA Vaccine trisodium salt

HPLC:
≥99%
Molecular Formula:
C9H13N3Na3O14P3
CAS No.::
987-65-5
Molecular Weight:
549.10
Color:
Colorless
HPLC:
≥99%
Molecular Formula:
C9H13N3Na3O14P3
CAS No.::
987-65-5
Molecular Weight:
549.10
Color:
Colorless
Description
C9H13N3Na3O14P3 MRNA Vaccine Raw Materials Cytidine-5'-Triphosphate Trisodium Salt

CTP, 100mM Solution/Cytidine-5'-triphosphate, trisodium salt/CAS NO. 123334-07-6/C9H13N3Na3O14P3

 

Product Description

 

 

  • Molecular Weight549.10
  • Appearance Clear colorless solution
  • Storage-20℃, Always avoid freeze-thaw cycles.
  • Molecular Formula C9H13N3Na3O14P3
  • CAS Number 123334-07-6
  • Purity HPLC ≥99%

 

 

 

Character Colorless transparent liquid
Identify In liquid phase detection, the retention time of the main peak of the test solution should be consistent with that of the control solution.
Concentration 100mM ± 3
HPLC ≥ 99.00%
pH 7.00 ~ 7.50
Maximum absorption wavelength

272±2nm

IVT

Meet the requirements

RNase

Meet the requirements

Microbial limit Total colony count <100cfu/ml
Nucleoside monophosphate < 0.1%
Nucleoside diphosphate < 0.5%
magnesium <1pp
calcium <2ppm
Heavy metal <2ppm

 

CTP (cytidine 5'-triphosphate) is an extremely stable nucleotide with more than 99% purity. It is supplied as 100 mM aqueous solution titrated to pH 7.0-7.5. This nucleotide is designed for a variety of molecular biology applications.

Highlights
• Greater than 99% purity confirmed by HPLC
• Functionally tested in in vitro transcription
• High stability – stable for two years at -20°C and after multiple freeze-thaw cycles

Applications
• aRNA synthesis
• siRNA synthesis
• RNA amplification
in vitro transcription

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