Antineoplastic drug resistance in brain tumors

P C Phillips1

  • 1Department of Neurology, Johns Hopkins Hospital, Baltimore, Maryland.

Neurologic Clinics
|May 1, 1991
PubMed

Insights

Drug resistance in neoplasms is complex, involving molecular biology and DNA repair. Understanding these mechanisms is key to developing new brain tumor treatments and improving drug delivery while minimizing neurotoxicity.

Area of Science:

  • Oncology
  • Molecular Biology
  • Pharmacology

Background:

  • Neoplastic drug resistance is a multifactorial challenge affecting both brain and systemic tumors.
  • Existing research has identified individual mechanisms of drug resistance.
  • Brain tumor biology is less understood than systemic tumors, complicating resistance research.

Purpose of the Study:

  • To emphasize molecular biology of resistance, including gene expression regulation for detoxifying and transport proteins.
  • To further identify DNA repair mechanisms in normal and neoplastic cells.
  • To investigate the interrelationship between various resistance mechanisms.

Main Methods:

  • Focus on molecular biology to understand gene expression regulating resistance proteins.
  • Identification of DNA repair mechanisms in both normal and cancerous cells.
  • Studying the interplay between different resistance mechanisms.

Main Results:

  • In vitro resistance mechanisms may differ significantly from in vivo scenarios.
  • Strategies to reverse resistance include buthionine sulfoximine, ethacrynic acid, and calcium channel blockers.
  • New drug development and rational modification of existing agents aim to overcome resistance.

Conclusions:

  • Understanding resistance mechanisms is crucial for developing clinical strategies to reverse cellular resistance and enhance drug sensitivity.
  • For brain tumors, strategies like high-dose chemotherapy and local drug delivery are being explored.
  • Minimizing neurotoxicity requires understanding the sensitivity of brain tissues to chemotherapeutic agents.