| Literature DB >> 25936257 |
Monique Lüthy1, Mary C Wheldon1, Chehasnah Haji-Cheteh1, Masakazu Atobe2, Paul S Bond1, Peter O'Brien3, Roderick E Hubbard4, Ian J S Fairlamb1.
Abstract
Synthetic routes to six 3-D scaffolds containing piperazine, pyrrolidine and piperidine cores have been developed. The synthetic methodology focused on the use of N-Boc α-lithiation-trapping chemistry. Notably, suitably protected and/or functionalised medicinal chemistry building blocks were synthesised via concise, connective methodology. This represents a rare example of lead-oriented synthesis. A virtual library of 190 compounds was then enumerated from the six scaffolds. Of these, 92 compounds (48%) fit the lead-like criteria of: (i) -1⩽AlogP⩽3; (ii) 14⩽number of heavy atoms⩽26; (iii) total polar surface area⩾50Å(2). The 3-D shapes of the 190 compounds were analysed using a triangular plot of normalised principal moments of inertia (PMI). From this, 46 compounds were identified which had lead-like properties and possessed 3-D shapes in under-represented areas of pharmaceutical space. Thus, the PMI analysis of the 190 member virtual library showed that whilst scaffolds which may appear on paper to be 3-D in shape, only 24% of the compounds actually had 3-D structures in the more interesting areas of 3-D drug space.Entities:
Keywords: 3-D shape analysis; Lead-like library; Lead-oriented synthesis; Nitrogen heterocycles; Organolithium-mediated synthesis
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Year: 2015 PMID: 25936257 DOI: 10.1016/j.bmc.2015.04.005
Source DB: PubMed Journal: Bioorg Med Chem ISSN: 0968-0896 Impact factor: 3.641