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Updated: Apr 3, 2026

Three-Dimensional Bone Extracellular Matrix Model for Osteosarcoma
Published on: April 12, 2019
Osteosarcoma 3D patient derived cultures to test genome-informed personalized treatment options: a feasibility study
Ieva Palubeckaitė1,2, Sanne Venneker1, Natasja Franceschini1
1Department of Pathology, Leiden University Medical Center, Leiden, Netherlands.
Background:
Improving osteosarcoma treatment beyond conventional (neo)adjuvant chemotherapy and resection remains challenging. An urgent need for novel therapeutic options, particularly personalized and targeted approaches, has emerged due to high inter-patient molecular heterogeneity. A lack of representative in vitro and in vivo models impedes therapeutic development, therefore we aimed to create 3D in vitro long term culture models directly from patient material.
Methods:
Tumour cells from seven osteosarcoma patients were propagated in monolayer or collagen hydrogels, while whole-exome sequencing of corresponding primary tumour tissue was performed to identify potential drug targets. Established cultures were subsequently used to assess efficacy of the identified personalized treatment options.
Results:
Three out of seven hydrogel cultures harbored the same genetic alterations as the corresponding primary tumours, but only one culture (L6565) showed viable cells after cryopreservation in combination with long term expansion. Our findings demonstrate feasibility of establishing long-term patient-derived osteosarcoma cultures with a success rate of 14%. This single patient line was used to evaluate genome-informed therapy and to compare cell culture models of increasing complexity. L6565 exhibited homozygous CDKN2A loss with retained Rb expression, rendering tumour cells sensitive to CDK4/CDK6 inhibition via palbociclib. Tumour heterogeneity was reflected in advanced culture methods producing more variability in treatment response.
Conclusion:
These results highlight the potential of genome-informed therapies in osteosarcoma and the importance of refining culture techniques to enhance translational research and therapeutic outcomes.
Insights
Developing patient-derived osteosarcoma cultures is feasible. One successful long-term culture (L6565) showed sensitivity to CDK4/CDK6 inhibition, highlighting potential for personalized osteosarcoma treatments.
Area of Science:
- Oncology
- Biotechnology
- Genomics
Background:
- Osteosarcoma treatment faces challenges due to molecular heterogeneity.
- Novel personalized and targeted therapies are needed.
- Lack of representative in vitro and in vivo models hinders therapeutic development.
Purpose of the Study:
- To create 3D in vitro long-term culture models directly from patient osteosarcoma material.
- To identify potential drug targets through whole-exome sequencing.
- To assess the efficacy of personalized treatment options using these models.
Main Methods:
- Osteosarcoma tumor cells from seven patients were cultured in monolayer or collagen hydrogels.
- Whole-exome sequencing was performed on primary tumor tissues.
- Established cultures were used to test personalized therapies, including CDK4/CDK6 inhibition.
Main Results:
- 14% success rate in establishing long-term patient-derived osteosarcoma cultures.
- One culture (L6565) maintained genetic alterations and viability after cryopreservation.
- L6565 demonstrated sensitivity to palbociclib (CDK4/CDK6 inhibitor) due to CDKN2A loss.
Conclusions:
- Genome-informed therapies show potential for osteosarcoma treatment.
- Refining culture techniques is crucial for advancing translational research.
- Patient-derived models are vital for evaluating targeted therapies and understanding treatment response variability.

