Selenium Nanoparticles as an Efficient Nanomedicine for the Therapy of Huntington's Disease

ACS Appl Mater Interfaces. 2019 Sep 25;11(38):34725-34735. doi: 10.1021/acsami.9b12319. Epub 2019 Sep 12.

Abstract

Huntington's disease (HD) is an incurable disease with progressive loss of neural function, which is influenced by epigenetic, oxidative stress, metabolic, and nutritional factors. Targeting inhibition of huntingtin protein aggregation is a strategy for HD therapy, but the efficacy is unsatisfactory. Studies found that selenium (Se) levels in the brain are insufficient for HD disease individuals, while improvement in Se homeostasis in the brain may attenuate neuronal loss and dysfunction. In this study, we applied selenium nanoparticles (NPs) (Nano-Se) for the HD disease therapy by regulating HD-related neurodegeneration and cognitive decline based on transgenic HD models of Caenorhabditis elegans (C. elegans). At low dosages, Nano-Se NPs significantly reduced neuronal death, relieved behavioral dysfunction, and protected C. elegans from damages in stress conditions. The molecular mechanism further revealed that Nano-Se attenuated oxidative stress, inhibited the aggregation of huntingtin proteins, and downregulated the expression of histone deacetylase family members at mRNA levels. The results suggested that Nano-Se has great potential for Huntington's disease therapy. In conclusion, the mechanism about how Nano-Se NPs protect from damages in stress conditions and how they repair neural functions will benefit HD disease therapy. This study will also guide rational design of Nano-Se NPs or other selenium compounds to improve HD therapy in the future.

Keywords: Huntington’s disease; behavioral dysfunction; histone deacetylase; huntingtin protein; oxidative stress; selenium nanoparticles.

MeSH terms

  • Animals
  • Animals, Genetically Modified
  • Caenorhabditis elegans* / genetics
  • Caenorhabditis elegans* / metabolism
  • Cell Death / drug effects
  • Disease Models, Animal
  • Humans
  • Huntingtin Protein / genetics
  • Huntingtin Protein / metabolism
  • Huntington Disease* / drug therapy
  • Huntington Disease* / genetics
  • Huntington Disease* / metabolism
  • Huntington Disease* / pathology
  • Nanomedicine
  • Nanoparticles* / chemistry
  • Nanoparticles* / therapeutic use
  • Neurons / metabolism
  • Neurons / pathology
  • Oxidative Stress / drug effects*
  • Selenium* / chemistry
  • Selenium* / pharmacology

Substances

  • HTT protein, human
  • Huntingtin Protein
  • Selenium