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Research Article

Evaluation of the oxidation of 1-methyl-4-phenyl-1,2,3,6-tetrahydropyridine (MPTP) to toxic pyridinium cations by monoamine oxidase (MAO) enzymes and its use to search for new MAO inhibitors and protective agents

Pages 810-817 | Received 11 Jul 2011, Accepted 20 Aug 2011, Published online: 12 Oct 2011

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Cristian Follmer. (2014) Monoamine oxidase and α-synuclein as targets in Parkinson’s disease therapy. Expert Review of Neurotherapeutics 14:6, pages 703-716.
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Haixiao Fang, Hang Zhang, Lin Li, Yun Ni, Riri Shi, Zheng Li, Xuekang Yang, Bo Ma, Chengwu Zhang, Qiong Wu, Changmin Yu, Naidi Yang, Shao Q. Yao & Wei Huang. (2020) Rational Design of a Two‐Photon Fluorogenic Probe for Visualizing Monoamine Oxidase A Activity in Human Glioma Tissues. Angewandte Chemie International Edition 59:19, pages 7536-7541.
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Haixiao Fang, Hang Zhang, Lin Li, Yun Ni, Riri Shi, Zheng Li, Xuekang Yang, Bo Ma, Chengwu Zhang, Qiong Wu, Changmin Yu, Naidi Yang, Shao Q. Yao & Wei Huang. (2020) Rational Design of a Two‐Photon Fluorogenic Probe for Visualizing Monoamine Oxidase A Activity in Human Glioma Tissues. Angewandte Chemie 132:19, pages 7606-7611.
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Rati Kailash Prasad Tripathi & Senthil Raja Ayyannan. (2019) Monoamine oxidase-B inhibitors as potential neurotherapeutic agents: An overview and update. Medicinal Research Reviews 39:5, pages 1603-1706.
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Tomás Herraiz, Andrea Flores & Lidia Fernández. (2018) Analysis of monoamine oxidase (MAO) enzymatic activity by high-performance liquid chromatography-diode array detection combined with an assay of oxidation with a peroxidase and its application to MAO inhibitors from foods and plants. Journal of Chromatography B 1073, pages 136-144.
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Abdelrahman Ibrahim Abushouk, Ahmed Negida, Hussien Ahmed & Mohamed M. Abdel-Daim. (2017) Neuroprotective mechanisms of plant extracts against MPTP induced neurotoxicity: Future applications in Parkinson’s disease. Biomedicine & Pharmacotherapy 85, pages 635-645.
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Tomás Herraiz. (2016) N-methyltetrahydropyridines and pyridinium cations as toxins and comparison with naturally-occurring alkaloids. Food and Chemical Toxicology 97, pages 23-39.
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T. Bohnert, A. Patel, I. Templeton, Y. Chen, C. Lu, G. Lai, L. Leung, S. Tse, H. J. Einolf, Y.-H. Wang, M. Sinz, R. Stearns, R. Walsky, W. Geng, S. Sudsakorn, D. Moore, L. He, J. Wahlstrom, J. Keirns, R. Narayanan, D. Lang & X. Yang. (2016) Evaluation of a New Molecular Entity as a Victim of Metabolic Drug-Drug Interactions--an Industry Perspective. Drug Metabolism and Disposition 44:8, pages 1399-1423.
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Tomás Herraiz, Hugo Guillén & Juan Galisteo. (2013) Metabolite Profile Resulting from the Activation/Inactivation of 1-Methyl-4-phenyl-1,2,3,6-tetrahydropyridine and 2-Methyltetrahydro- β -carboline by Oxidative Enzymes . BioMed Research International 2013, pages 1-10.
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