A proteomic study on a human osteosarcoma cell line Saos-2 treated with diallyl trisulfide

Yong Kui Zhang1, Xu Hua Zhang, Jian Min Li

  • 1Department of Orthopedics, Affiliated Hospital of Shandong University of Traditional Chinese Medicine, China.

Anti-Cancer Drugs
|June 25, 2009
PubMed

Insights

Diallyl trisulfide (DATS), a garlic compound, effectively inhibits human osteosarcoma cell proliferation by inducing cell cycle arrest and apoptosis. Proteomic analysis revealed significant changes in proteins related to these processes, supporting DATS

Area of Science:

  • Oncology
  • Molecular Biology
  • Biochemistry

Background:

  • Garlic derivatives, including diallyl trisulfide (DATS), are recognized for their potential anticancer properties.
  • Previous studies show DATS inhibits proliferation in various cancer cell lines by affecting cell cycle and apoptosis.
  • The specific effects of DATS on human osteosarcoma cells remained largely uninvestigated.

Purpose of the Study:

  • To investigate the effects of DATS on human osteosarcoma (Saos-2) cell proliferation, cell cycle, and apoptosis.
  • To analyze global protein expression patterns in Saos-2 cells treated with DATS.
  • To explore the potential molecular mechanisms underlying DATS' action in osteosarcoma.

Main Methods:

  • Saos-2 cells were treated with varying concentrations of DATS (25, 50, 100 µmol/l) for different durations.
  • Cell proliferation, cell cycle progression, and apoptosis were assessed.
  • Proteomic analysis using two-dimensional electrophoresis and mass spectrometry was performed on DATS-treated cells.

Main Results:

  • DATS significantly inhibited Saos-2 cell proliferation in a dose- and time-dependent manner.
  • DATS treatment led to a dose- and time-dependent increase in apoptosis and G0/G1 cell cycle arrest.
  • Proteomic analysis identified 27 proteins with altered expression, 13 of which are involved in cell cycle regulation or apoptosis.

Conclusions:

  • DATS effectively suppresses human osteosarcoma cell proliferation by inducing cell cycle arrest and apoptosis.
  • Proteomic data supports DATS' role as an apoptosis inducer in tumor cells.
  • Further research is needed to elucidate the precise molecular mechanisms of DATS action in osteosarcoma.

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