3‐Aminoazetidin‐2‐one Derivatives as N‐Acylethanolamine Acid Amidase (NAAA) Inhibitors Suitable for Systemic Administration |
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Authors: | Dr. Annalisa Fiasella Dr. Andrea Nuzzi Dr. Maria Summa Dr. Andrea Armirotti Dr. Glauco Tarozzo Prof. Giorgio Tarzia Prof. Marco Mor Dr. Fabio Bertozzi Dr. Tiziano Bandiera Prof. Daniele Piomelli |
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Affiliation: | 1. Drug Discovery and Development, Istituto Italiano di Tecnologia, Via Morego 30, 16163 Genova (Italy), Fax: (+39)?010‐71781228;2. Dipartimento di Scienze Biomolecolari, Università degli Studi di Urbino “Carlo Bo”, Piazza del Rinascimento 6, 61029 Urbino (Italy);3. Dipartimento di Farmacia, Università degli Studi di Parma, Viale della Scienze 27A, 43124 Parma (Italy);4. Departments of Anatomy & Neurobiology, Pharmacology, and Biological Chemistry, University of California, Irvine, 3216 Gillespie Neuroscience Facility, Irvine, CA 92697‐4621 (USA) |
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Abstract: | N‐Acylethanolamine acid amidase (NAAA) is a cysteine hydrolase that catalyzes the hydrolysis of endogenous lipid mediators such as palmitoylethanolamide (PEA). PEA has been shown to exert anti‐inflammatory and antinociceptive effects in animals by engaging peroxisome proliferator‐activated receptor α (PPAR‐α). Thus, preventing PEA degradation by inhibiting NAAA may provide a novel approach for the treatment of pain and inflammatory states. Recently, 3‐aminooxetan‐2‐one compounds were identified as a class of highly potent NAAA inhibitors. The utility of these compounds is limited, however, by their low chemical and plasma stabilities. In the present study, we synthesized and tested a series of N‐(2‐oxoazetidin‐3‐yl)amides as a novel class of NAAA inhibitors with good potency and improved physicochemical properties, suitable for systemic administration. Moreover, we elucidated the main structural features of 3‐aminoazetidin‐2‐one derivatives that are critical for NAAA inhibition. |
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Keywords: | N‐acylethanolamine acid amidase β ‐lactams cysteine hydrolase inhibitors structure– activity relationships |
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