Related Experiment Video
Updated: Dec 14, 2025

Development of a Human Preclinical Model of Osteoclastogenesis from Peripheral Blood Monocytes Co-cultured with Breast Cancer Cell Lines
Published on: September 13, 2017
Development and characterization of the novel human osteosarcoma cell line COS-33 with sustained activation of the
Ashley VanCleave1, Mykayla Palmer1,2, Fang Fang1
1Cancer Biology and Immunotherapies Group, Sanford Research, Sioux Falls, SD, USA.
Abstract:
Outcomes have not improved for metastatic osteosarcoma for several decades. In part, this failure to develop better therapies stems from a lack of understanding of osteosarcoma biology, given the rarity of the disease and the high genetic heterogeneity at the time of diagnosis. We report here the successful establishment of a new human osteosarcoma cell line, COS-33, from a patient-derived xenograft and demonstrate retention of the biological features of the original tumor. We found high mTOR signaling activity in the cultured cells, which were sensitive to a small molecule inhibitor, rapamycin, a suppressor of the mTOR pathway. Suppressed mTOR signaling after treatment with rapamycin was confirmed by decreased phosphorylation of the S6 ribosomal protein. Increasing concentrations of rapamycin progressively inhibited cell proliferation in vitro. We observed significant inhibitory effects of the drug on cell migration, invasion, and colony formation in the cultured cells. Furthermore, we found that only a strong osteogenic inducer, bone morphogenetic protein-2, promoted the cells to differentiate into mature mineralizing osteoblasts, indicating that the COS-33 cell line may have impaired osteoblast differentiation. Grafted COS-33 cells exhibited features typical of osteosarcoma, such as production of osteoid and tumorigenicity in vivo. In addition, we revealed that the COS-33 cell line retained a complex karyotype, a homozygous deletion of the TP53 gene, and typical histological features from its original tumor. Our novel cellular model may provide a valuable platform for studying the etiology and molecular pathogenesis of osteosarcoma as well as for testing novel drugs for future genome-informed targeted therapy.
Insights
A new human osteosarcoma cell line, COS-33, was established from patient tumors. This model shows high mTOR signaling and sensitivity to rapamycin, offering a platform for osteosarcoma research and drug testing.
Area of Science:
- Oncology
- Cell Biology
- Genetics
Background:
- Metastatic osteosarcoma outcomes have stagnated due to limited understanding of disease biology and high genetic heterogeneity.
- Developing effective therapies for rare cancers like osteosarcoma is challenging.
Purpose of the Study:
- To establish and characterize a novel human osteosarcoma cell line (COS-33) for research.
- To investigate the potential of targeting mTOR signaling in osteosarcoma.
Main Methods:
- Established COS-33 cell line from patient-derived xenografts.
- Assessed mTOR signaling activity and response to rapamycin treatment in vitro.
- Evaluated effects on cell proliferation, migration, invasion, and differentiation.
- Characterized tumorigenicity and genetic features in vivo and in vitro.
Main Results:
- COS-33 cells exhibit high mTOR signaling activity and are sensitive to rapamycin.
- Rapamycin treatment inhibited proliferation, migration, invasion, and colony formation.
- COS-33 cells showed impaired osteoblast differentiation but retained tumorigenicity and key genetic features (TP53 deletion).
Conclusions:
- The COS-33 cell line is a valuable, biologically relevant model for osteosarcoma research.
- This model can facilitate studies on osteosarcoma pathogenesis and the development of targeted therapies.
- Targeting mTOR signaling shows promise for osteosarcoma treatment.
Related Concept Videos
mTOR Signaling and Cancer Progression
The mTOR pathway or the...
PI3K/mTOR/AKT Signaling Pathway

