Literature DB >> 18409015

Emerging approaches for the syntheses of bicyclic imidazo[1,2-x]-heterocycles.

Christopher Hulme1, Yeon-Sun Lee.   

Abstract

Imidazo-[1,2-x]heterocycles are versatile building blocks for use in both a 'drug hunters' quest to discover new leads and a chemical biologists search for effective molecular tools in 'cell perturbation' studies. At the front end of the drug discovery flow chart, the last 5-10 years have witnessed the discovery of new high-throughput methodologies which very quickly have enabled access to virtual libraries of these chemo-types in the realm of 10(7) derivatives. Interestingly, these often neglected cores in patent cooperation treaty (PCT) applications appear in several highly effective marketed drugs, completing the medicinal chemists search for clinical success. Such rigid chemo-types, all containing a bridgehead nitrogen atom, are thus poised for an ever increasing impact on the discovery and development of new molecular therapeutics. The following mini-review will briefly cover therapeutic utility, chemical methodologies and automation developed to enable preparation of arrays of these chemo-types in a high-throughput manner. Synthetic emphasis is placed on a 3-component-3-center isocyanide based multi-component reaction (IMCR), which spans solution, solid phase, flourous and microwave assisted organic synthesis.

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Year:  2008        PMID: 18409015     DOI: 10.1007/s11030-008-9072-1

Source DB:  PubMed          Journal:  Mol Divers        ISSN: 1381-1991            Impact factor:   2.943


  30 in total

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Review 10.  Rapid assembly of molecular diversity via exploitation of isocyanide-based multi-component reactions.

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  16 in total

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Review 7.  Groebke-Blackburn-Bienaymé multicomponent reaction: emerging chemistry for drug discovery.

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Review 9.  Emerging molecular diversity from the intra-molecular Ugi reaction: iterative efficiency in medicinal chemistry.

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10.  Synthesis of diverse nitrogen-enriched heterocyclic scaffolds using a suite of tunable one-pot multicomponent reactions.

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