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Establishment of Cancer Stem Cell Cultures from Human Conventional Osteosarcoma
Published on: October 14, 2016
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.
Abstract:
Osteosarcoma is the most common malignant bone cancer in pediatric patients. Patients who respond poorly to chemotherapy experience worse clinical outcomes with a high mortality rate. The major challenge is the lack of effective drugs for these patients. To introduce new drugs for clinical approval, preclinical studies based on in vitro models must demonstrate the potency of the tested drugs, enabling the drugs to enter phase 1 clinical trials. Patient-derived cell culture is a promising testing platform for in vitro studies, as they more accurately recapitulate cancer states and genetic profiles compared to cell lines. In the present study, we established patient-derived osteosarcoma cells (PDC) from a patient who had previously been diagnosed with retinoblastoma. We identified a new variant of a germline mutation in the RB1 gene in the tissue of the patient. The biological effects of this PDC were studied to observe whether the cryopreserved PDC retained a feature of fresh PDC. The cryopreserved PDC preserved the key biological effects, including cell growth, invasive capability, migration, and mineralization, that define the conserved phenotypes compared to fresh PDC. From whole genome sequencing analysis of osteosarcoma tissue and patient-derived cells, we found that cryopreserved PDC was a minor population in the origin tissue and was selectively grown under the culture conditions. The cryopreserved PDC has a high resistance to conventional chemotherapy. This study demonstrated that the established cryopreserved PDC has the aggressive characteristics of osteosarcoma, in particular the chemoresistance phenotype that might be used for further investigation in the chemoresistant mechanism of osteosarcoma. In conclusion, the approach we applied for primary cell culture might be a promising method to generate in vitro models for functional testing of osteosarcoma.
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.

