Literature DB >> 24171666

Synthesis of HCV replicase inhibitors: base-catalyzed synthesis of protected α-hydrazino esters and selective aerobic oxidation with catalytic Pt/Bi/C for synthesis of imidazole-4,5-dicarbaldehyde.

Roy K Bowman1, Andrew D Brown, Jannine H Cobb, John F Eaddy, Mark A Hatcher, Martin R Leivers, John F Miller, Mark B Mitchell, Daniel E Patterson, Matthew A Toczko, Shiping Xie.   

Abstract

A robust convergent synthesis of the prodrugs of HCV replicase inhibitors 1-5 is described. The central 5H-imidazo[4,5-d]pyridazine core was formed from acid-catalyzed cyclocondensation of an imidazole-4,5-dicarbaldehyde (20) and a α-hydrazino ester, generated in situ from the bis-BOC-protected precursors 25 and 33. The acidic conditions not only released the otherwise unstable α-hydrazino esters but also were the key to avoid facile decarboxylation to the parent drugs from the carboxylic ester prodrugs 1-5. The bis-BOC α-hydrazino esters 25 and 33 were prepared by addition of ester enolates (from 23 and 32) to di-tert-butyl azodicarboxylate via catalysis with mild inorganic bases, such as Li2CO3. A selective aerobic oxidation with catalytic 5% Pt-Bi/C in aqueous KOH was developed to provide the dicarbaldehyde 20 from the diol 27.

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Year:  2013        PMID: 24171666     DOI: 10.1021/jo4014595

Source DB:  PubMed          Journal:  J Org Chem        ISSN: 0022-3263            Impact factor:   4.354


  1 in total

Review 1.  Experimental Limiting Oxygen Concentrations for Nine Organic Solvents at Temperatures and Pressures Relevant to Aerobic Oxidations in the Pharmaceutical Industry.

Authors:  Paul M Osterberg; Jeffry K Niemeier; Christopher J Welch; Joel M Hawkins; Joseph R Martinelli; Thomas E Johnson; Thatcher W Root; Shannon S Stahl
Journal:  Org Process Res Dev       Date:  2014-12-06       Impact factor: 3.317

  1 in total

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