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Oxidative Medicine and Cellular Longevity

ISSN 1942-0900

4 papers in the library · 167 citations · publishing 2009-2022

Papers

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Antidepressant Effect of Ketamine on Inflammation‐Mediated Cytokine Dysregulation in Adults with Treatment‐Resistant Depression: Rapid Systematic Review

Oxidative Medicine and Cellular Longevity 2022 Shiryn D. Sukhram, Grozdena Yilmaz, Jianying Gu 26 citations

Background . Major depressive disorder (MDD) and treatment‐resistant depression (TRD) represent a global source of societal and health burden. To advise proper management of inflammation‐related depression among TRD patients, it is important to identify therapeutic clinical treatments. A key factor is related to proinflammatory cytokines such as interleukin‐ (IL‐) 1 β , IL‐6, and tumor necrosis...

The Effects of Ibogaine on Uterine Smooth Muscle Contractions: Relation to the Activity of Antioxidant Enzymes.

Oxidative Medicine and Cellular Longevity 2018 Zorana Oreščanin-dušić, Nikola Tatalović, Teodora Vidonja Uzelac et al. 7 citations

Ibogaine is an indole alkaloid originally extracted from the root bark of the African rainforest shrub Tabernanthe iboga. It has been explored as a treatment for substance abuse because it interrupts drug addiction and relieves withdrawal symptoms. However, it has been shown that ibogaine treatment leads to a sharp and transient fall in cellular ATP level followed by an increase of cellular...

Clinical Physiology and Mechanism of Dizocilpine (MK‐801): Electron Transfer, Radicals, Redox Metabolites and Bioactivity

Oxidative Medicine and Cellular Longevity September 9, 2009 Peter Kovacic, Ratnasamy Somanathan 100 citations

Dizocilpine (MK‐801), an extensively investigated drug possessing secondary amine and benzenoid functions, displays a wide array of biological properties, including anticonvulsant and anesthetic. There is scant discussion of biomechanism. A relevant, important finding is formation of oxidative metabolites in the hydroxylamine and phenolic categories. Analogy to cocaine metabolites suggests...

Novel, Unifying Mechanism for Mescaline in The Central Nervous System: Electrochemistry, Catechol Redox Metabolite, Receptor, Cell Signaling and Structure Activity Relationships

Oxidative Medicine and Cellular Longevity 2009 Peter Kovacic, Ratnasamy Somanathan 34 citations

A unifying mechanism for abused drugs has been proposed previously from the standpoint of electron transfer. Mescaline can be accommodated within the theoretical framework based on redox cycling by the catechol metabolite with its quinone counterpart. Electron transfer may play a role in electrical effects involving the nervous system in the brain. This approach is in accord with structure...