Ras pathway activation in gliomas: a strategic target for intranasal administration of perillyl alcohol

Clovis Orlando da Fonseca1, Rafael Linden, Débora Futuro

  • 1Serviço de Neurocirurgia, Hospital Universitário Antônio Pedro, Universidade Federal Fluminense, Niterói, RJ, Brazil. clovis.orlando@uol.com.br

Abstract

Insights

Intranasal perillyl alcohol (POH) shows promise for treating malignant gliomas. This noninvasive method demonstrated no toxicity and suggested antitumor activity in a Phase I/II trial.

Area of Science:

  • Oncology
  • Neuro-oncology
  • Pharmacology

Background:

  • Malignant gliomas often exhibit molecular alterations like EGFR/PDGFR overexpression and PTEN/TP53 mutations.
  • These alterations can activate critical signaling pathways such as P13K/Akt and Ras/MAPK.
  • Perillyl alcohol (POH) is an isoprenoid investigated for its potential to inhibit these pathways, particularly Ras.

Purpose of the Study:

  • To evaluate the safety and efficacy of intranasal perillyl alcohol (POH) in patients with relapsed malignant gliomas.
  • To assess toxicity and progression-free survival (PFS) after six months of POH treatment.

Main Methods:

  • A Phase I/II clinical trial was conducted on 37 patients with relapsed malignant gliomas.
  • POH was administered intranasally at 0.3% (55 mg) four times daily on an interrupted schedule.
  • Disease progression was monitored via neurological exams and imaging (CT/MRI), with response criteria defined for complete response, partial response (PR), progressive course (PC), and stable disease.

Main Results:

  • After six months, partial response (PR) was observed in 3.4% of glioblastoma multiforme (GBM) and 33.3% of anaplastic oligodendroglioma (AO) patients.
  • Stable disease was achieved by 44.8% (GBM), 60% (grade III astrocytoma - AA), and 33.3% (AO) of patients.
  • Progression-free survival (PFS) rates were 48.2% for GBM, 60% for AA, and 66.6% for AO.

Conclusions:

  • Intranasal POH administration is a safe, noninvasive, and cost-effective method for treating malignant gliomas.
  • The observed tumor size regression suggests potential antitumor activity.
  • Further investigation into POH as a signal transduction inhibitor for brain tumors is warranted.

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