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1.
Proc Natl Acad Sci U S A ; 111(49): 17504-9, 2014 Dec 09.
Article in English | MEDLINE | ID: mdl-25416591

ABSTRACT

Enhancing the oral bioavailability of peptide drug leads is a major challenge in drug design. As such, methods to address this challenge are highly sought after by the pharmaceutical industry. Here, we propose a strategy to identify appropriate amides for N-methylation using temperature coefficients measured by NMR to identify exposed amides in cyclic peptides. N-methylation effectively caps these amides, modifying the overall solvation properties of the peptides and making them more membrane permeable. The approach for identifying sites for N-methylation is a rapid alternative to the elucidation of 3D structures of peptide drug leads, which has been a commonly used structure-guided approach in the past. Five leucine-rich peptide scaffolds are reported with selectively designed N-methylated derivatives. In vitro membrane permeability was assessed by parallel artificial membrane permeability assay and Caco-2 assay. The most promising N-methylated peptide was then tested in vivo. Here we report a novel peptide (15), which displayed an oral bioavailability of 33% in a rat model, thus validating the design approach. We show that this approach can also be used to explain the notable increase in oral bioavailability of a somatostatin analog.


Subject(s)
Amides/chemistry , Drug Design , Magnetic Resonance Spectroscopy , Peptides/pharmacokinetics , Administration, Oral , Animals , Biological Availability , Caco-2 Cells , Chromatography, Liquid , Humans , Hydrogen Bonding , Mass Spectrometry , Methylation , Peptides/chemical synthesis , Permeability , Protein Binding , Protein Conformation , Protein Interaction Mapping , Rats , Rats, Wistar , Solvents/chemistry , Technology, Pharmaceutical/methods , Temperature
2.
J Med Chem ; 54(20): 7299-317, 2011 Oct 27.
Article in English | MEDLINE | ID: mdl-21916510

ABSTRACT

New phenoxyacetic acid antagonists of CRTH2 are described. Following the discovery of a hit compound by a focused screening, high protein binding was identified as its main weakness. Optimization aimed at reducing serum protein binding led to the identification of several compounds that showed not only excellent affinities for the receptor (41 compounds with K(i) < 10 nM) but also excellent potencies in a human whole blood assay (IC(50) < 100 nM; PGD2-induced eosinophil shape change). Additional optimization of the PK characteristics led to the identification of several compounds suitable for in vivo testing. Of these, 19k and 19s were tested in two different pharmacological models (acute FITC-mediated contact hypersensitivity and ovalbumin-induced eosinophilia models) and found to be active after oral dosing (10 and 30 mg/kg).


Subject(s)
Acetates/chemical synthesis , Alkynes/chemical synthesis , Anti-Allergic Agents/chemical synthesis , Anti-Inflammatory Agents/chemical synthesis , Receptors, Immunologic/antagonists & inhibitors , Receptors, Prostaglandin/antagonists & inhibitors , Sulfones/chemical synthesis , Acetates/pharmacokinetics , Acetates/pharmacology , Administration, Oral , Alkynes/pharmacokinetics , Alkynes/pharmacology , Animals , Anti-Allergic Agents/pharmacokinetics , Anti-Allergic Agents/pharmacology , Anti-Inflammatory Agents/pharmacokinetics , Anti-Inflammatory Agents/pharmacology , Binding, Competitive , Blood Proteins/metabolism , Caco-2 Cells , Cell Membrane Permeability , Cell Shape , Chemotaxis, Leukocyte , Dermatitis, Contact/drug therapy , Eosinophils/drug effects , Eosinophils/pathology , Eosinophils/physiology , Female , HEK293 Cells , Humans , Mice , Mice, Inbred BALB C , Microsomes, Liver/metabolism , Ovalbumin/immunology , Phenoxyacetates , Protein Binding , Pulmonary Eosinophilia/drug therapy , Pulmonary Eosinophilia/immunology , Radioligand Assay , Rats , Structure-Activity Relationship , Sulfones/pharmacokinetics , Sulfones/pharmacology
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