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Antitumor Potential of Antiepileptic Drugs in Human Glioblastoma: Pharmacological Targets and Clinical Benefits

Biomedicines, ISSN: 2227-9059, Vol: 11, Issue: 2
2023
  • 11
    Citations
  • 0
    Usage
  • 20
    Captures
  • 2
    Mentions
  • 16
    Social Media
Metric Options:   Counts1 Year3 Year

Metrics Details

  • Citations
    11
  • Captures
    20
  • Mentions
    2
    • Blog Mentions
      1
      • Blog
        1
    • News Mentions
      1
      • News
        1
  • Social Media
    16
    • Shares, Likes & Comments
      16
      • Facebook
        16

Most Recent Blog

Biomedicines, Vol. 11, Pages 582: Antitumor Potential of Antiepileptic Drugs in Human Glioblastoma: Pharmacological Targets and Clinical Benefits

Biomedicines, Vol. 11, Pages 582: Antitumor Potential of Antiepileptic Drugs in Human Glioblastoma: Pharmacological Targets and Clinical Benefits Biomedicines doi: 10.3390/biomedicines11020582 Authors: Manuela Stella Giammarco

Most Recent News

University of Genova Researcher Describes New Findings in Glioblastomas (Antitumor Potential of Antiepileptic Drugs in Human Glioblastoma: Pharmacological Targets and Clinical Benefits)

2023 MAR 02 (NewsRx) -- By a News Reporter-Staff News Editor at Genomics & Genetics Daily -- Research findings on glioblastomas are discussed in a

Review Description

Glioblastoma (GBM) is characterized by fast-growing cells, genetic and phenotypic heterogeneity, and radio-chemo-therapy resistance, contributing to its dismal prognosis. Various medical comorbidities are associated with the natural history of GBM. The most disabling and greatly affecting patients’ quality of life are neurodegeneration, cognitive impairment, and GBM-related epilepsy (GRE). Hallmarks of GBM include molecular intrinsic mediators and pathways, but emerging evidence supports the key role of non-malignant cells within the tumor microenvironment in GBM aggressive behavior. In this context, hyper-excitability of neurons, mediated by glutamatergic and GABAergic imbalance, contributing to GBM growth strengthens the cancer-nervous system crosstalk. Pathogenic mechanisms, clinical features, and pharmacological management of GRE with antiepileptic drugs (AEDs) and their interactions are poorly explored, yet it is a potentially promising field of research in cancer neuroscience. The present review summarizes emerging cooperative mechanisms in oncogenesis and epileptogenesis, focusing on the neuron-to-glioma interface. The main effects and efficacy of selected AEDs used in the management of GRE are discussed in this paper, as well as their potential beneficial activity as antitumor treatment. Overall, although still many unclear processes overlapping in GBM growth and seizure onset need to be elucidated, this review focuses on the intriguing targeting of GBM-neuron mutual interactions to improve the outcome of the so challenging to treat GBM.

Bibliographic Details

Stella, Manuela; Baiardi, Giammarco; Pasquariello, Stefano; Sacco, Fabio; Dellacasagrande, Irene; Corsaro, Alessandro; Mattioli, Francesca; Barbieri, Federica

MDPI AG

Medicine; Biochemistry, Genetics and Molecular Biology

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