The Altered Transcriptome and DNA Methylation Profiles of Docetaxel Resistance in Breast Cancer PDX Models

Jorge Gómez-Miragaya1, Sebastián Morán1, Maria Eréndira Calleja-Cervantes1

  • 1Cancer Epigenetics and Biology Program (PEBC), Bellvitge Biomedical Research Institute (IDIBELL), Barcelona, Spain.

Insights

This study reveals that DNA methylation patterns in triple-negative breast cancer (TNBC) patient-derived xenografts (PDX) can predict docetaxel resistance. Specific methylation and gene expression changes offer potential biomarkers for chemotherapy response in TNBC.

Area of Science:

  • Oncology
  • Epigenetics
  • Genomics

Background:

  • Taxanes are standard chemotherapy for metastatic breast cancer, but resistance limits efficacy.
  • Patient-derived xenografts (PDX) are valuable models for studying cancer biology and drug response.
  • The role of DNA methylation in taxane resistance in breast cancer remains largely uncharacterized.

Purpose of the Study:

  • To investigate genome-wide DNA methylation patterns associated with docetaxel resistance in breast cancer patient-derived xenografts (PDX).
  • To identify potential DNA methylation signatures that predict chemotherapy response in triple-negative breast cancer (TNBC).

Main Methods:

  • Genome-wide DNA methylation profiling was performed on sensitive and docetaxel-resistant TNBC and luminal breast cancer PDX models.
  • Transcriptomic profiling was conducted on selected sensitive/resistant PDX pairs.
  • Integrative analysis of methylation and gene expression data was performed.

Main Results:

  • Breast cancer PDX models retain subtype-specific DNA methylation patterns.
  • Two stable DNA methylation clusters were identified in TNBC PDX models, with differential methylation observed in genes/pathways related to docetaxel response.
  • A DNA methylation signature capable of segregating TNBC based on chemotherapy response was identified.
  • Integrative analysis revealed correlations between differentially methylated and expressed genes in docetaxel-resistant TNBC PDX models.

Conclusions:

  • Subtype-specific DNA methylation is maintained in breast cancer PDX models.
  • Differentially methylated and expressed genes/pathways are associated with the emergence of docetaxel resistance in TNBC.
  • These molecular changes may hold predictive value for chemotherapy response in TNBC.

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