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Rotenone - Wikipedia
Rotenone - Wikipedia

Antioxidant mechanism of mitochondria-targeted plastoquinone SkQ1 is  suppressed in aglycemic HepG2 cells dependent on oxidative phosphorylation  - ScienceDirect
Antioxidant mechanism of mitochondria-targeted plastoquinone SkQ1 is suppressed in aglycemic HepG2 cells dependent on oxidative phosphorylation - ScienceDirect

Bioenergetic adaptation in response to autophagy regulators during rotenone  exposure - Giordano - 2014 - Journal of Neurochemistry - Wiley Online  Library
Bioenergetic adaptation in response to autophagy regulators during rotenone exposure - Giordano - 2014 - Journal of Neurochemistry - Wiley Online Library

Novel (Hetero)arylalkenyl propargylamine compounds are protective in  toxin-induced models of Parkinson's disease | Molecular Neurodegeneration |  Full Text
Novel (Hetero)arylalkenyl propargylamine compounds are protective in toxin-induced models of Parkinson's disease | Molecular Neurodegeneration | Full Text

Hypothetical model of rotenone-induced PD with possible therapeutic... |  Download Scientific Diagram
Hypothetical model of rotenone-induced PD with possible therapeutic... | Download Scientific Diagram

Rotenone neurotoxicity: Relevance to Parkinson's disease - ScienceDirect
Rotenone neurotoxicity: Relevance to Parkinson's disease - ScienceDirect

The coupling mechanism of mammalian respiratory complex I
The coupling mechanism of mammalian respiratory complex I

Pharmaceuticals | Free Full-Text | β-Cells Different Vulnerability to the  Parkinsonian Neurotoxins Rotenone, 1-Methyl-4-phenylpyridinium (MPP+) and  6-Hydroxydopamine (6-OHDA) | HTML
Pharmaceuticals | Free Full-Text | β-Cells Different Vulnerability to the Parkinsonian Neurotoxins Rotenone, 1-Methyl-4-phenylpyridinium (MPP+) and 6-Hydroxydopamine (6-OHDA) | HTML

rotenone | Oluwatobi Clement's Blog
rotenone | Oluwatobi Clement's Blog

Oxidative damage to macromolecules in human Parkinson disease and the  rotenone model. - Abstract - Europe PMC
Oxidative damage to macromolecules in human Parkinson disease and the rotenone model. - Abstract - Europe PMC

Antioxidants | Free Full-Text | Toxicity of Necrostatin-1 in Parkinson's  Disease Models | HTML
Antioxidants | Free Full-Text | Toxicity of Necrostatin-1 in Parkinson's Disease Models | HTML

Mechanism of Toxicity in Rotenone Models of Parkinson's Disease | Journal  of Neuroscience
Mechanism of Toxicity in Rotenone Models of Parkinson's Disease | Journal of Neuroscience

Activation of Group III Metabotropic Glutamate Receptors Attenuates Rotenone  Toxicity on Dopaminergic Neurons through a Microtubule-Dependent Mechanism  | Journal of Neuroscience
Activation of Group III Metabotropic Glutamate Receptors Attenuates Rotenone Toxicity on Dopaminergic Neurons through a Microtubule-Dependent Mechanism | Journal of Neuroscience

Mechanism of Toxicity in Rotenone Models of Parkinson's Disease | Journal  of Neuroscience
Mechanism of Toxicity in Rotenone Models of Parkinson's Disease | Journal of Neuroscience

PLOS ONE: Transcriptome Analysis of a Rotenone Model of Parkinsonism  Reveals Complex I-Tied and -Untied Toxicity Mechanisms Common to  Neurodegenerative Diseases
PLOS ONE: Transcriptome Analysis of a Rotenone Model of Parkinsonism Reveals Complex I-Tied and -Untied Toxicity Mechanisms Common to Neurodegenerative Diseases

Transcriptome Analysis of a Rotenone Model of Parkinsonism Reveals Complex  I-Tied and -Untied Toxicity Mechanisms Common to Neurodegenerative Diseases
Transcriptome Analysis of a Rotenone Model of Parkinsonism Reveals Complex I-Tied and -Untied Toxicity Mechanisms Common to Neurodegenerative Diseases

SIRT3 Protects Rotenone-induced Injury in SH-SY5Y Cells by Promoting  Autophagy through the LKB1-AMPK-mTOR Pathway
SIRT3 Protects Rotenone-induced Injury in SH-SY5Y Cells by Promoting Autophagy through the LKB1-AMPK-mTOR Pathway

Dl‑butylphthalide inhibits rotenone‑induced oxidative stress in microglia  via regulation of the Keap1/Nrf2/HO‑1 signaling pathway
Dl‑butylphthalide inhibits rotenone‑induced oxidative stress in microglia via regulation of the Keap1/Nrf2/HO‑1 signaling pathway

Plant species forbidden in health food and their toxic constituents,  toxicology and detoxification - Food & Function (RSC Publishing)  DOI:10.1039/C5FO00995B
Plant species forbidden in health food and their toxic constituents, toxicology and detoxification - Food & Function (RSC Publishing) DOI:10.1039/C5FO00995B

Rotenone Increases Isoniazid Toxicity but Does Not Cause Significant Liver  Injury: Implications for the Hypothesis that Inhibition of the  Mitochondrial Electron Transport Chain Is a Common Mechanism of  Idiosyncratic Drug-Induced Liver Injury.,Chemical
Rotenone Increases Isoniazid Toxicity but Does Not Cause Significant Liver Injury: Implications for the Hypothesis that Inhibition of the Mitochondrial Electron Transport Chain Is a Common Mechanism of Idiosyncratic Drug-Induced Liver Injury.,Chemical

rotenone | Oluwatobi Clement's Blog
rotenone | Oluwatobi Clement's Blog

Neurotoxic Mechanism and Shortcomings of MPTP, 6-OHDA, Rotenone and  Paraquat-induced Parkinson's Disease Animal Models | Bentham Science
Neurotoxic Mechanism and Shortcomings of MPTP, 6-OHDA, Rotenone and Paraquat-induced Parkinson's Disease Animal Models | Bentham Science

Rotenone decreases intracellular aldehyde dehydrogenase activity:  implications for the pathogenesis of Parkinson's disease - Goldstein - 2015  - Journal of Neurochemistry - Wiley Online Library
Rotenone decreases intracellular aldehyde dehydrogenase activity: implications for the pathogenesis of Parkinson's disease - Goldstein - 2015 - Journal of Neurochemistry - Wiley Online Library

PDF] Mechanism of Toxicity in Rotenone Models of Parkinson's Disease |  Semantic Scholar
PDF] Mechanism of Toxicity in Rotenone Models of Parkinson's Disease | Semantic Scholar

Transferrin1 modulates rotenone-induced Parkinson's disease through  affecting iron homeostasis in Drosophila melanogaster - ScienceDirect
Transferrin1 modulates rotenone-induced Parkinson's disease through affecting iron homeostasis in Drosophila melanogaster - ScienceDirect