Molecular Profile Changes in Patients with Castrate-Resistant Prostate Cancer Pre- and Post-Abiraterone/Prednisone

Hugues Sicotte1, Krishna R Kalari1, Sisi Qin2

  • 1Division of Biomedical Statistics and Informatics, Department of Quantitative Health Sciences Research, Mayo Clinic, Rochester, Minnesota.

Insights

This study reveals key resistance mechanisms to abiraterone acetate/prednisone (AA/P) in metastatic castration-resistant prostate cancer (mCRPC). Researchers identified potential drug targets to overcome treatment resistance, including topoisomerase inhibitors.

Area of Science:

  • Oncology
  • Genomics
  • Molecular Biology

Background:

  • Metastatic castration-resistant prostate cancer (mCRPC) remains a significant clinical challenge.
  • Abiraterone acetate/prednisone (AA/P) is a standard treatment, but resistance mechanisms limit its long-term efficacy.
  • Understanding these resistance mechanisms is crucial for developing novel therapeutic strategies.

Purpose of the Study:

  • To identify genomic and transcriptomic alterations associated with resistance to abiraterone acetate/prednisone (AA/P) in mCRPC patients.
  • To explore potential therapeutic targets for overcoming AA/P resistance.

Main Methods:

  • Analysis of whole-exome sequencing (WES) and RNA-sequencing data from 83 mCRPC patients.
  • Biopsies were collected before (V1) and after 12 weeks (V2) of AA/P treatment.
  • Resistance was defined by time to treatment change (TTTC).

Main Results:

  • Nonresponders exhibited low TGFBR3 expression and activated Wnt/cell cycle pathways, with AR variant upregulation and CDK11B deletion.
  • Androgen processing gene deletions (HSD17B11, CYP19A1) were noted in nonresponders post-treatment.
  • Differential gene expression in cell cycle, DNA repair, Wnt, and Aurora kinase pathways distinguished responders from nonresponders.

Conclusions:

  • Resistance to AA/P involves complex molecular changes including Wnt pathway activation and cell cycle dysregulation.
  • Targeting topoisomerase, cell cycle, MYC/AURKA, and PI3K/AKT/mTOR pathways may overcome AA/P resistance.
  • Further research into these pathways could lead to improved treatment outcomes for mCRPC patients.

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