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An efficient synthetic route for preparation of antimycobacterial wollamides and evaluation of their in vitro and in vivo efficacy
Authors:Henok Asfaw  Thomas Wetzlar  Maria Santos Martinez-Martinez  Peter Imming
Affiliation:1. Institut für Pharmazie, Martin-Luther-Universität Halle-Wittenberg, 06120 Halle, Germany;2. Diseases of the Developing World, Medicines Development Campus, GlaxoSmithKline, 28760 Tres Cantos, Madrid, Spain
Abstract:
A convenient solid phase peptide synthetic (SPPS) route is reported for the preparation of antimycobacterial wollamides. The method is based on on-resin head-to-tail cyclization and is fast, efficient and amenable to automation. The in vitro antimycobacterial activities of the newly synthesized wollamides were evaluated against M. tuberculosis H37Rv (Mtb H37Rv). To assess their drug-likeness, in vitro pharmacokinetic (ADME) profiling was also performed. For wollamides with potent extracellular potency, intracellular activities and in vivo efficacy were determined. The results disclose the potent antimycobacterial (MICMtb H37Rv?=?1.1?µM) and suitable drug-like properties of wollamide A (4b). Out of the synthesized wollamides, four compounds (4be) exhibited potent intracellular activities against Mtb H37Rv infected human macrophages (IC50?=?0.2–1.3?µM). Results of in vivo blood exposure and efficacy assays for 4d and 4e are discussed.
Keywords:AUC  area under curve  DNAUC  dose normalized area under curve  2-CT  2-chlorotrtityl chloride  CFU  colony forming unit  DCM  dichloromethane  DIPEA  DMF  dimethylformamide  ADME  drug metabolism and pharmacokinetics  DMSO  dimethyl sulfoxide  Fmoc-  fluorenylmethyloxycarbonyl  HATU  HFIP  hexafluoro-2-propanol  HOBt  hydroxybenzotriazole  half maximal inhibitory concentration  MIC  minimum inhibitory concentration  Mtb  NMP  Pbf-  2,2,4,6,7-pentamethyldihydrobenzofuran-5-sulfonyl  PyBOP  benzotriazol-1-yl-oxytripyrrolidinophosphonium-hexafluorophosphat  SPPS  solid phase peptide synthesis:  TFA  trifluoroacetic acid  TIPS  triisopropylsilane  Wollamides  Cyclic peptides  Mycobacteria  SPPS  ADME
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