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24806-96-0

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24806-96-0 Usage

Chemical structure

A pentofuranosyl group attached to a 1H-1,2,4-triazol-3-amine moiety.

Type of compound

Nucleoside analog.

Therapeutic potential

Investigated for its potential in treating viral infections and cancer.

Mechanism of action

Interferes with virus replication and inhibits the growth of cancer cells.

Potential applications

As a new class of antiviral and anticancer drugs.

Further research

More studies and clinical trials are needed to understand its pharmacological properties and potential applications.

Check Digit Verification of cas no

The CAS Registry Mumber 24806-96-0 includes 8 digits separated into 3 groups by hyphens. The first part of the number,starting from the left, has 5 digits, 2,4,8,0 and 6 respectively; the second part has 2 digits, 9 and 6 respectively.
Calculate Digit Verification of CAS Registry Number 24806-96:
(7*2)+(6*4)+(5*8)+(4*0)+(3*6)+(2*9)+(1*6)=120
120 % 10 = 0
So 24806-96-0 is a valid CAS Registry Number.

24806-96-0Downstream Products

24806-96-0Relevant articles and documents

High-throughput five minute microwave accelerated glycosylation approach to the synthesis of nucleoside libraries

Bookser, Brett C.,Raffaele, Nicholas B.

, p. 173 - 179 (2007/10/03)

The Vorbrueggen glycosylation reaction was adapted into a one-step 5 min/130 °C microwave assisted reaction. Triethanolamine in acetontrile containing 2% water was determined to be optimal for the neutralization of trimethylsilyl inflate allowing for direct MPLC purification of the reaction mixture. When coupled with a NH3/methanol deprotection reaction, a high-throughput method of nucleoside library synthesis was enabled. The method was demonstrated by examining the ribosylation of 48 nitrogen containing heteroaromatic bases that included 25 purines, four pyrazolopyrimidines, two 8-azapurines, one 2-azapurine, two imidazopyridines, two benzimidazoles, three imidazoles, three 1,2,4-triazoles, two pyrimidines, two 3-deazapyrimidines, one quinazolinedione, and one alloxazine. Of these, 32 yielded single regioisomer products, and six resulted in separable mixtures. Seven examples provided inseparable regioisomer mixtures of -two to three compounds (16 nucleosides), and three examples failed to yield isolable products. For the 45 single isomers isolated, the average two-step overall yield ± SD was 26 ± 16%, and the average purity ± SD was 95 ± 6%. A total of 58 different nucleosides were prepared of which 15 had not previously been accessed directly from glycosylation/deprotection of a readily available base.

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