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Synthesis of meta-substituted arene bioisosteres from [3.1.1]propellane.
Frank, Nils; Nugent, Jeremy; Shire, Bethany R; Pickford, Helena D; Rabe, Patrick; Sterling, Alistair J; Zarganes-Tzitzikas, Tryfon; Grimes, Thomas; Thompson, Amber L; Smith, Russell C; Schofield, Christopher J; Brennan, Paul E; Duarte, Fernanda; Anderson, Edward A.
Afiliação
  • Frank N; Chemistry Research Laboratory, Department of Chemistry, University of Oxford, Oxford, UK.
  • Nugent J; Chemistry Research Laboratory, Department of Chemistry, University of Oxford, Oxford, UK.
  • Shire BR; Chemistry Research Laboratory, Department of Chemistry, University of Oxford, Oxford, UK.
  • Pickford HD; Chemistry Research Laboratory, Department of Chemistry, University of Oxford, Oxford, UK.
  • Rabe P; Chemistry Research Laboratory, Department of Chemistry, University of Oxford, Oxford, UK.
  • Sterling AJ; Chemistry Research Laboratory, Department of Chemistry, University of Oxford, Oxford, UK.
  • Zarganes-Tzitzikas T; Alzheimer's Research UK Oxford Drug Discovery Institute, Centre for Medicines Discovery, Nuffield Department of Medicine, Oxford, UK.
  • Grimes T; Alzheimer's Research UK Oxford Drug Discovery Institute, Centre for Medicines Discovery, Nuffield Department of Medicine, Oxford, UK.
  • Thompson AL; Chemistry Research Laboratory, Department of Chemistry, University of Oxford, Oxford, UK.
  • Smith RC; Abbvie Drug Discovery Science & Technology (DDST), North Chicago, IL, USA.
  • Schofield CJ; Chemistry Research Laboratory, Department of Chemistry, University of Oxford, Oxford, UK.
  • Brennan PE; Alzheimer's Research UK Oxford Drug Discovery Institute, Centre for Medicines Discovery, Nuffield Department of Medicine, Oxford, UK.
  • Duarte F; Chemistry Research Laboratory, Department of Chemistry, University of Oxford, Oxford, UK.
  • Anderson EA; Chemistry Research Laboratory, Department of Chemistry, University of Oxford, Oxford, UK. edward.anderson@chem.ox.ac.uk.
Nature ; 611(7937): 721-726, 2022 11.
Article em En | MEDLINE | ID: mdl-36108675
ABSTRACT
Small-ring cage hydrocarbons are popular bioisosteres (molecular replacements) for commonly found para-substituted benzene rings in drug design1. The utility of these cage structures derives from their superior pharmacokinetic properties compared with their parent aromatics, including improved solubility and reduced susceptibility to metabolism2,3. A prime example is the bicyclo[1.1.1]pentane motif, which is mainly synthesized by ring-opening of the interbridgehead bond of the strained hydrocarbon [1.1.1]propellane with radicals or anions4. By contrast, scaffolds mimicking meta-substituted arenes are lacking because of the challenge of synthesizing saturated isosteres that accurately reproduce substituent vectors5. Here we show that bicyclo[3.1.1]heptanes (BCHeps), which are hydrocarbons for which the bridgehead substituents map precisely onto the geometry of meta-substituted benzenes, can be conveniently accessed from [3.1.1]propellane. We found that [3.1.1]propellane can be synthesized on a multigram scale, and readily undergoes a range of radical-based transformations to generate medicinally relevant carbon- and heteroatom-substituted BCHeps, including pharmaceutical analogues. Comparison of the absorption, distribution, metabolism and excretion (ADME) properties of these analogues reveals enhanced metabolic stability relative to their parent arene-containing drugs, validating the potential of this meta-arene analogue as an sp3-rich motif in drug design. Collectively, our results show that BCHeps can be prepared on useful scales using a variety of methods, offering a new surrogate for meta-substituted benzene rings for implementation in drug discovery programmes.
Assuntos

Texto completo: 1 Base de dados: MEDLINE Assunto principal: Compostos Bicíclicos com Pontes / Desenho de Fármacos / Heptanos Idioma: En Revista: Nature Ano de publicação: 2022 Tipo de documento: Article País de afiliação: Reino Unido

Texto completo: 1 Base de dados: MEDLINE Assunto principal: Compostos Bicíclicos com Pontes / Desenho de Fármacos / Heptanos Idioma: En Revista: Nature Ano de publicação: 2022 Tipo de documento: Article País de afiliação: Reino Unido