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Updated: Jun 20, 2026

Three-Dimensional Bone Extracellular Matrix Model for Osteosarcoma
Published on: April 12, 2019
Osteosarcoma originates from mesenchymal stem cells in consequence of aneuploidization and genomic loss of Cdkn2
Alexander B Mohseny1, Karoly Szuhai, Salvatore Romeo
1Department of Pathology, Leiden University Medical Centre, The Netherlands.
Abstract:
High-grade osteosarcoma is characterized by extensive genetic instability, thereby hampering the identification of causative gene mutations and understanding of the underlying pathological processes. It lacks a benign precursor lesion and reports on associations with hereditary predisposition or germline mutations are uncommon, despite the early age of onset. Here we demonstrate a novel comprehensive approach for the study of premalignant stages of osteosarcoma development in a murine mesenchymal stem cell (MSC) system that formed osteosarcomas upon grafting. By parallel functional and phenotypic analysis of normal MSCs, transformed MSCs and derived osteosarcoma cells, we provide substantial evidence for a MSC origin of osteosarcoma. In a stepwise approach, using COBRA-FISH karyotyping and array CGH in different passages of MSCs, we identified aneuploidization, translocations and homozygous loss of the cdkn2 region as the key mediators of MSC malignant transformation. We then identified CDKN2A/p16 protein expression in 88 osteosarcoma patients as a sensitive prognostic marker, thereby bridging the murine MSCs model to human osteosarcoma. Moreover, occasional reports in patients mention osteosarcoma formation following bone marrow transplantation for an unrelated malignancy. Our findings suggest a possible hazard for the clinical use of MSCs; however, they also offer new opportunities to study early genetic events in osteosarcoma genesis and, more importantly, to modulate these events and record the effect on tumour progression. This could be instrumental for the identification of novel therapeutic strategies, since the success of the current therapies has reached a plateau phase.
Insights
This study reveals mesenchymal stem cells (MSCs) can originate osteosarcoma, a bone cancer. Genetic changes like aneuploidization and cdkn2 loss drive malignant transformation, with CDKN2A/p16 serving as a prognostic marker in patients.
Area of Science:
- Oncology
- Stem Cell Biology
- Genetics
Background:
- High-grade osteosarcoma exhibits significant genetic instability, complicating mutation identification and understanding of pathogenesis.
- Osteosarcoma typically lacks a benign precursor and rarely shows hereditary links, despite early onset.
Purpose of the Study:
- To investigate the premalignant stages of osteosarcoma development using a murine mesenchymal stem cell (MSC) model.
- To identify key genetic events driving MSC malignant transformation.
- To correlate findings with human osteosarcoma for prognostic marker identification.
Main Methods:
- Utilized a murine MSC system that formed osteosarcomas upon grafting.
- Performed parallel functional and phenotypic analysis of normal, transformed, and osteosarcoma MSCs.
- Employed COBRA-FISH karyotyping and array comparative genomic hybridization (aCGH) across MSC passages.
Main Results:
- Provided evidence supporting a MSC origin for osteosarcoma.
- Identified aneuploidization, translocations, and homozygous loss of the cdkn2 region as critical for MSC transformation.
- Demonstrated CDKN2A/p16 protein expression as a sensitive prognostic marker in 88 osteosarcoma patients.
Conclusions:
- Findings suggest a potential risk associated with clinical MSC use.
- The study offers new avenues for investigating early osteosarcoma genetic events.
- Identified potential for modulating these events to develop novel therapeutic strategies for osteosarcoma.
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