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4-Pyridinecarbothioamide, 2-(phenylmethyl)-, also known as 2-benzyl-4-pyridinecarbothioamide, is an organic compound with the chemical formula C12H11N2S. It is a derivative of pyridine, a heterocyclic aromatic compound containing a nitrogen atom in the ring structure. The molecule features a pyridine ring with a thioamide group (-C(S)NH2) at the 4-position and a benzyl group (C6H5CH2-) attached at the 2-position. 4-Pyridinecarbothioamide, 2-(phenylmethyl)- is primarily used as an intermediate in the synthesis of various pharmaceuticals and agrochemicals, particularly in the development of drugs targeting the central nervous system. Its chemical properties and reactivity make it a valuable building block in the creation of more complex molecules with potential therapeutic applications.

4580-25-0

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4580-25-0 Usage

Check Digit Verification of cas no

The CAS Registry Mumber 4580-25-0 includes 7 digits separated into 3 groups by hyphens. The first part of the number,starting from the left, has 4 digits, 4,5,8 and 0 respectively; the second part has 2 digits, 2 and 5 respectively.
Calculate Digit Verification of CAS Registry Number 4580-25:
(6*4)+(5*5)+(4*8)+(3*0)+(2*2)+(1*5)=90
90 % 10 = 0
So 4580-25-0 is a valid CAS Registry Number.

4580-25-0Downstream Products

4580-25-0Relevant academic research and scientific papers

Efficient analoging around ethionamide to explore thioamides bioactivation pathways triggered by boosters in Mycobacterium tuberculosis

Prieri, Marion,Frita, Rosangela,Probst, Nicolas,Sournia-Saquet, Alix,Bourotte, Marilyne,Déprez, Benoit,Baulard, Alain R.,Willand, Nicolas

, p. 35 - 46 (2018/10/02)

Ethionamide is a key antibiotic prodrug of the second-line chemotherapy regimen to treat tuberculosis. It targets the biosynthesis of mycolic acids thanks to a mycobacterial bioactivation carried out by the Baeyer-Villiger monooxygenase EthA, under the control of a transcriptional repressor called EthR. Recently, the drug-like molecule SMARt-420, which triggers a new transcriptional regulator called EthR2, allowed the derepression a cryptic alternative bioactivation pathway of ethionamide. In order to study the bioactivation of a collection of thioisonicotinamides through the two bioactivation pathways, we developed a new two-step chemical pathway that led to the efficient synthesis of eighteen ethionamide analogues. Measurements of the antimycobacterial activity of these derivatives, used alone and in combination with boosters BDM41906 or SMARt-420, suggest that the two different bioactivation pathways proceed via the same mechanism, which implies the formation of similar metabolites. In addition, an electrochemical study of the aliphatic thioisonicotinamide analogues was undertaken to see whether their oxidation potential correlates with their antitubercular activity measured in the presence or in the absence of the two boosters.

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