4.6 Article

Salidroside Protects Caenorhabditis elegans Neurons from Polyglutamine-Mediated Toxicity by Reducing Oxidative Stress

Journal

MOLECULES
Volume 19, Issue 6, Pages 7757-7769

Publisher

MDPI
DOI: 10.3390/molecules19067757

Keywords

salidroside; polyglutamine; neurotoxicity; oxidative stress; C. elegans; chemoavoidance

Funding

  1. National Natural Science Foundation of China [81274048]
  2. Guangdong Provincial Department of Science and Technology [2012B090600025]
  3. Fundamental Research Funds for the Central Universities [2012306020205, 20103060101000167]
  4. China Postdoctoral Science Foundation [2014M552086]

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Polyglutamine (polyQ) aggregation plays a pivotal role in the pathological process of Huntington's disease and other polyQ disorders. Therefore, strategies aiming at restoring dysfunction and reducing stresses mediated by polyQ toxicity are of therapeutic interest for proteotoxicity diseases. Salidroside, a glycoside from Rhodiola rosea, has been shown to have a variety of bioactivities, including antioxidant activity. Using transgenic Caenorhabditis elegans models, we show here that salidroside is able to reduce neuronal death and behavioral dysfunction mediated by polyQ expressed in ASH neurons, but the neuroprotective effect is not associated with prevention of polyQ aggregation per se. Further experiments reveal that the neuroprotective effect of salidroside in C. elegans models involves its antioxidant capabilities, including decrease of ROS levels and paraquat-induced mortality, increase of antioxidant enzyme activities and reduction of lipid peroxidation. These results demonstrate that salidroside exerts its neuroprotective function against polyQ toxicity via oxidative stress pathways.

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