Taxanes, microtubules and chemoresistant breast cancer

Barbara T McGrogan1, Breege Gilmartin, Desmond N Carney

  • 1UCD School of Medicine and Medical Science , University College Dublin, Dublin 4, Ireland.

Insights

Taxanes like paclitaxel and docetaxel treat breast cancer by stabilizing microtubules. Understanding resistance mechanisms involving spindle assembly checkpoint proteins and drug efflux pumps can improve patient outcomes.

Area of Science:

  • Oncology
  • Molecular Biology
  • Pharmacology

Background:

  • Taxanes (paclitaxel, docetaxel) are key breast cancer chemotherapeutics targeting microtubules.
  • While effective, taxane treatment leads to eventual relapse due to chemoresistance.
  • Mechanisms of taxane action and resistance require further elucidation.

Purpose of the Study:

  • To review chemoresistance mechanisms in taxane-treated breast cancer.
  • To explore the role of the spindle assembly checkpoint (SAC) and apoptotic signaling in resistance.
  • To identify potential predictive markers for taxane efficacy and resistance.

Main Methods:

  • Literature review focusing on taxane mechanisms and resistance.
  • Analysis of studies investigating spindle assembly checkpoint proteins (e.g., MAD2, BUBR1, Aurora A) and BRCA1.
  • Examination of the role of drug efflux pumps (MDR-1/P-gp) and microtubule-associated proteins (MAPs) in resistance.

Main Results:

  • Spindle microtubules are primary taxane targets.
  • SAC proteins (MAD2, BUBR1, Aurora A) and BRCA1 are potential markers for taxane resistance.
  • Overexpression of MDR-1/P-gp and altered MAPs (tau, stathmin, MAP4) may predict recurrence risk and treatment benefit.

Conclusions:

  • Dysfunctional SAC and apoptotic signaling contribute to taxane resistance.
  • Identifying key proteins and pathways can predict patient response to taxanes.
  • Targeting resistance mechanisms may improve outcomes for breast cancer patients.

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