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Highly potent PDE4 inhibitors with therapeutic potential.
Bioorg Med Chem 2004 Sep 01; 12(17):4645-65.BM

Abstract

The hypothesis that the dose-limiting side effects of PDE4 inhibitors could be mediated via the central nervous system prompted us to design and synthesize a hydrophilic piperidine analog to improve the side effect profile of Ariflo 1, which is an orally active second-generation PDE4 inhibitor. During evaluation of various water-soluble piperidine analogs, 2a-b, 11b-14b, and 17a showed therapeutic potential in cross-species comparison studies. The following three findings were obtained: (1) The hydroxamic acid group, a well known metal chelator, caused a marked increase of inhibitory activity. (2) Water-soluble piperidine analogs lacked the configurational isomerism of Ariflo 1 without loss of inhibitory activity. (3) Replacement of the 4-methoxy residue with a difluoromethoxy residue led to an increase of in vivo potency. Structure-activity relationships are presented. Single-dose rat pharmacokinetic data for 11b, 12b, and 17a are also presented.

Authors+Show Affiliations

Ochiai HMinase Research Institute, Ono Pharmaceutical Co. Ltd., 3-1-1 Sakurai, Shimamoto, Osaka, Mishima 618-8585, Japan.
Ohtani TNo affiliation info available
Ishida ANo affiliation info available
Kusumi KNo affiliation info available
Kato MNo affiliation info available
Kohno HNo affiliation info available
Odagaki YNo affiliation info available
Kishikawa KNo affiliation info available
Yamamoto SNo affiliation info available
Takeda HNo affiliation info available
Obata TNo affiliation info available
Nakai HNo affiliation info available
Toda MNo affiliation info available

MeSH

3',5'-Cyclic-AMP PhosphodiesterasesAcetatesAdministration, OralAnimalsAnti-Inflammatory AgentsChelating AgentsCyclic Nucleotide Phosphodiesterases, Type 4Cyclohexanecarboxylic AcidsHumansHydroxamic AcidsIsomerismNitrilesPhosphodiesterase InhibitorsPyridinesRatsStructure-Activity Relationship

Pub Type(s)

Comparative Study
Journal Article

Language

eng

PubMed ID

15358291
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