• Title of article

    Promising Molecular Targets for Pharmacological Therapy of Neurodegenerative Pathologies

  • Author/Authors

    Neganova, M.E Institute of Physiologically Active Compounds of the Russian Academy of Sciences, Moscow region, Chernogolovka, Russia , Aleksandrov, Yu.R Institute of Physiologically Active Compounds of the Russian Academy of Sciences, Moscow region, Chernogolovka, Russia , Nebogatikov, V.O Institute of Physiologically Active Compounds of the Russian Academy of Sciences, Moscow region, Chernogolovka, Russia , Klochkov, S.G Institute of Physiologically Active Compounds of the Russian Academy of Sciences, Moscow region, Chernogolovka, Russia , Ustyugov, A.A Institute of Physiologically Active Compounds of the Russian Academy of Sciences, Moscow region, Chernogolovka, Russia

  • Pages
    21
  • From page
    60
  • To page
    80
  • Abstract
    Drug development for the treatment of neurodegenerative diseases has to confront numerous problems occurring, in particular, because of attempts to address only one of the causes of the pathogenesis of neurological disorders. Recent advances in multitarget therapy research are gaining momentum by utilizing pharmacophores that simultaneously affect different pathological pathways in the neurodegeneration process. The application of such a therapeutic strategy not only involves the treatment of symptoms, but also mainly addresses prevention of the fundamental pathological processes of neurodegenerative diseases and the reduction of cognitive abilities. Neuroinflammation and oxidative stress, mitochondrial dysfunction, dysregulation of the expression of histone deacetylases, and aggregation of pathogenic forms of proteins are among the most common and significant pathological features of neurodegenerative diseases. In this review, we focus on the molecular mechanisms and highlight the main aspects, including reactive oxygen species, the cell endogenous antioxidant system, neuroinflammation triggers, metalloproteinases, α-synuclein, tau proteins, neuromelanin, histone deacetylases, presenilins, etc. The processes and molecular targets discussed in this review could serve as a starting point for screening leader compounds that could help prevent or slow down the development of neurodegenerative diseases.
  • Keywords
    aggregation of pathogenic proteins , proteinopathy , histone deacetylases , oxidative stress , neuroinflammation , neurodegeneration
  • Journal title
    Acta Naturae
  • Serial Year
    2020
  • Record number

    2617311