A systems biology approach to identify molecular pathways altered by HDAC inhibition in osteosarcoma

Luke A Wittenburg1, Andrey A Ptitsyn, Douglas H Thamm

  • 1Animal Cancer Center, Department of Clinical Sciences, Colorado State University Animal Cancer Center, 300 W. Drake Rd., Fort Collins, Colorado 80523-1620, USA. lwittenb@colostate.edu

Insights

Histone deacetylase inhibitors (HDACi) like valproic acid show promise for treating osteosarcoma (OS) by altering gene expression. This study reveals how HDACi impacts key cellular pathways, offering insights into novel therapeutic strategies for OS.

Area of Science:

  • Oncology
  • Molecular Biology
  • Pharmacology

Background:

  • Osteosarcoma (OS) is a common skeletal tumor in humans and dogs, with current treatments limited by toxicity.
  • Novel therapeutic strategies are needed to improve patient survival in OS.
  • Histone deacetylase inhibitors (HDACi) show potential in enhancing chemotherapy's anti-tumor activity.

Purpose of the Study:

  • To investigate the gene expression changes in canine OS cells treated with the HDACi valproic acid (VPA).
  • To identify the affected cellular pathways and understand the mechanisms of HDACi in OS.
  • To explore potential biomarkers for predicting response to HDACi-based therapies.

Main Methods:

  • Canine OS cells were treated with VPA.
  • Gene expression analysis was performed using Affymetrix canine v2.0 genechip.
  • Pathway analysis was conducted using MetaCore and Ingenuity Pathways Analysis software.
  • Microarray results were validated using qRT-PCR and functional assays.

Main Results:

  • VPA treatment significantly altered gene expression in OS cells.
  • Key affected pathways included oxidative phosphorylation, cytoskeleton remodeling, cell cycle, and ubiquitin-proteasome.
  • Upregulation of the NQ01 enzyme was observed, leading to synergistic cell viability reduction.
  • HDACi treatment impacts multiple critical cellular processes in OS.

Conclusions:

  • HDACi, such as VPA, exert their anti-tumor effects in OS by modulating specific gene expression pathways.
  • Understanding these mechanisms can guide the development of more effective combination therapies for OS.
  • The study identified potential biomarkers for predicting treatment response to HDACi in OS patients.

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