Clinical Implementation of Novel Targeted Therapeutics in Advanced Breast Cancer

Mary D Chamberlin1,2,3, Erica B Bernhardt4, Todd W Miller5,6

  • 1Department of Medicine, Norris Cotton Cancer Center, Geisel School of Medicine at Dartmouth, Lebanon, New Hampshire. Mary.D.Chamberlin@Hitchcock.org.

Insights

Advanced breast cancers harbor targetable genetic alterations. This review explores the clinical potential of PI3K, AKT, FGFRs, mutant HER2, HDAC1/3, PD-1, and PD-L1 as therapeutic targets, aiding biomarker discovery for improved breast cancer treatment.

Area of Science:

  • Oncology
  • Genetics
  • Pharmacology

Background:

  • Most advanced breast cancers possess genetic alterations amenable to targeted drug therapies.
  • Genomic initiatives like TCGA and ICGC provide valuable context for next-generation sequencing (NGS) in advanced breast cancer.
  • While targeted therapies for CDK4/6 exist, a lack of predictive biomarkers necessitates a trial-and-error approach in clinical practice.

Purpose of the Study:

  • To review the clinical potential of specific molecular targets in advanced breast cancer.
  • To focus on the rationale behind therapeutic development and current clinical testing status for these targets.
  • To highlight the importance of identifying biomarkers for predicting treatment resistance.

Main Methods:

  • Review of clinical data and scientific literature.
  • Analysis of next-generation sequencing (NGS) findings.
  • Examination of therapeutic targets including PI3K, AKT, FGFRs, mutant HER2, HDAC1/3, PD-1, and PD-L1.

Main Results:

  • Next-generation sequencing can identify actionable alterations in key cancer driver genes.
  • Epigenetic and immunologic therapies targeting HDAC1/3, PD-1, and PD-L1 show promise.
  • Several molecular targets, including PI3K, AKT, FGFRs, and mutant HER2, are under investigation for advanced breast cancer treatment.

Conclusions:

  • Identifying predictive biomarkers is crucial for optimizing adjuvant therapy decisions in the first-line setting.
  • Despite current challenges in secondary resistance settings, targeted therapies offer significant potential.
  • Further research into PI3K, AKT, FGFRs, mutant HER2, HDAC1/3, PD-1, and PD-L1 is essential for advancing breast cancer treatment strategies.

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