Selective Fatty Acid Amide Hydrolase Inhibitors as Potential Novel Antiepileptic Agents
- Alessandro Grillo1
- Filomena Fezza2
- Giulia Chemi1
- Roberto Colangeli3
- Simone Brogi4
- Domenico Fazio5
- Stefano Federico1
- Alessandro Papa1
- Nicola Relitti1
- Roberto Di Maio6
- Gianluca Giorgi1
- Stefania Lamponi1
- Massimo Valoti7
- Beatrice Gorelli7
- Simona Saponara7
- Mascia Benedusi8
- Alessandra Pecorelli9
- Patrizia Minetti10
- Giuseppe Valacchi11
- Stefania Butini1
- Giuseppe Campiani1
- Sandra Gemma1
- Mauro Maccarrone12
- Giuseppe Di Giovanni13
- 1. Department of Excellence of Biotechnology, Chemistry and Pharmacy, 2018-2022, University of Siena, Via Aldo Moro 2, 53100 Siena, Italy.
- 2. Department of Experimental Medicine Tor Vergata, University of Rome, Via Montpellier 1, 00121 Rome, Italy.
- 3. Laboratory of Neurophysiology, Department of Physiology and Biochemistry, Faculty of Medicine and Surgery, University of Malta, MSD2080 Msida, Malta. Department of Experimental and Clinical Medicine, Section of Neuroscience and Cell Biology, Università Politecnica delle Marche, 60126 Ancona, Italy.
- 4. Department of Pharmacy, University of Pisa, Via Bonanno 6, 56126 Pisa, Italy.
- 5. European Center for Brain Research/IRCCS Santa Lucia Foundation, Via del Fosso di Fiorano 64, 00143 Rome, Italy.
- 6. Pittsburgh Institute for Neurodegenerative Diseases and Department of Neurology, University of Pittsburgh, Pittsburgh, 15261 Pennsylvania, United States.
- 7. Department of Life Sciences, University of Siena, Via Aldo Moro, 2, 53100 Siena, Italy.
- 8. Department of Biomedical and Specialist Surgical Sciences, Section of Medical Biochemistry, Molecular Biology and Genetics, University of Ferrara, 44121 Ferrara, Italy.
- 9. Plants for Human Health Institute, Animal Science Department, NC Research Campus, NC State University, 600 Laureate Way, Kannapolis, 28081 North Carolina, United States.
- 10. Sigma Tau, Via Pontina Km 30,400, 00040 Pomezia, Italy.
- 11. Department of Biomedical and Specialist Surgical Sciences, Section of Medical Biochemistry, Molecular Biology and Genetics, University of Ferrara, 44121 Ferrara, Italy.Plants for Human Health Institute, Animal Science Department, NC Research Campus, NC State University, 600 Laureate Way, Kannapolis, 28081 North Carolina, United States.Department of Food and Nutrition, Kyung Hee University, 02447 Seoul, South Korea.
- 12. Department of Biotechnological and Applied Clinical Sciences, University of L'Aquila, Via Vetoio snc, 67100 L'Aquila, Italy.European Center for Brain Research/IRCCS Santa Lucia Foundation, Via del Fosso di Fiorano 64, 00143 Rome, Italy
- 13. Laboratory of Neurophysiology, Department of Physiology and Biochemistry, Faculty of Medicine and Surgery, University of Malta, MSD2080 Msida, Malta.Neuroscience Division, School of Biosciences, Cardiff University, CF10 3AT Cardiff, United Kingdom.
Description
Temporal lobe epilepsy is the most common form of epilepsy, and current antiepileptic drugs are ineffective in many patients. The endocannabinoid system has been associated with an on-demand protective response to seizures. Blocking endocannabinoid catabolism would elicit antiepileptic effects, devoid of psychotropic effects. We herein report the discovery of selective anandamide catabolic enzyme fatty acid amide hydrolase (FAAH) inhibitors with promising antiepileptic efficacy, starting from a further investigation of our prototypical inhibitor 2a. When tested in two rodent models of epilepsy, 2a reduced the severity of the pilocarpine-induced status epilepticus and the elongation of the hippocampal maximal dentate activation. Notably, 2a did not affect hippocampal dentate gyrus long-term synaptic plasticity. These data prompted our further endeavor aiming at discovering new antiepileptic agents, developing a new set of FAAH inhibitors (3a-m). Biological studies highlighted 3h and 3m as the best performing analogues to be further investigated. In cell-based studies, using a neuroblastoma cell line, 3h and 3m could reduce the oxinflammation state by decreasing DNA-binding activity of NF-kB p65, devoid of cytotoxic effect. Unwanted cardiac effects were excluded for 3h (Langendorff perfused rat heart). Finally, the new analogue 3h reduced the severity of the pilocarpine-induced status epilepticus as observed for 2a.
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- Journal article: 10.1021/acschemneuro.1c00192 (DOI)