Establishment, characterization, and genetic profiling of patient-derived osteosarcoma cells from a patient with

Patcharawadee Thongkumkoon1, Apiwat Sangphukieo1, Siripong Tongjai2

  • 1Faculty of Medicine, Center of Multidisciplinary Technology for Advanced Medicine (CMUTEAM), Chiang Mai University, 110 Intawaroros Road, Si Phum, Muang, Chiang Mai, 50200, Thailand.

Scientific Reports
|May 14, 2024
PubMed

Insights

Researchers established chemoresistant patient-derived osteosarcoma cells (PDC) from a retinoblastoma patient. Cryopreserved PDC models retain key biological effects and aggressive characteristics, offering a promising platform for studying osteosarcoma chemoresistance.

Area of Science:

  • Oncology
  • Cancer Biology
  • Genetics

Background:

  • Osteosarcoma is the most common pediatric bone cancer with poor outcomes for chemotherapy-nonresponders.
  • Developing effective treatments is hindered by a lack of suitable preclinical models.
  • Patient-derived cells offer a more accurate in vitro model than cell lines for drug testing.

Purpose of the Study:

  • To establish and characterize patient-derived osteosarcoma cells (PDC) for preclinical drug screening.
  • To investigate the retention of biological characteristics in cryopreserved PDC.
  • To assess the chemoresistance phenotype of the established PDC model.

Main Methods:

  • Established patient-derived osteosarcoma cells (PDC) from a patient with a germline RB1 mutation.
  • Evaluated biological effects (growth, invasion, migration, mineralization) of cryopreserved vs. fresh PDC.
  • Performed whole genome sequencing on osteosarcoma tissue and PDC.
  • Assessed chemoresistance of cryopreserved PDC to conventional chemotherapy.

Main Results:

  • Cryopreserved PDC retained key biological effects and conserved phenotypes compared to fresh PDC.
  • Whole genome sequencing revealed cryopreserved PDC as a selectively cultured minor population.
  • Established cryopreserved PDC exhibited high resistance to conventional chemotherapy.
  • The PDC model demonstrated aggressive osteosarcoma characteristics, including chemoresistance.

Conclusions:

  • Cryopreserved patient-derived osteosarcoma cells (PDC) successfully model aggressive osteosarcoma phenotypes, including chemoresistance.
  • This PDC model is a valuable tool for investigating osteosarcoma chemoresistance mechanisms.
  • The primary cell culture approach provides a promising method for generating in vitro models for osteosarcoma drug testing.