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Updated: Jan 29, 2026

An Efficient Method to Obtain Dedifferentiated Fat Cells
Published on: July 15, 2016
Establishment and characterization of a novel dedifferentiated chondrosarcoma cell line, NCC-dCS1-C1
Rieko Oyama1, Fusako Kito1, Mami Takahashi2
1Department of Innovative Seeds Evaluation, National Cancer Center Research Institute, 5-1-1 Tsukiji, Chuo-ku, Tokyo, 104-0045, Japan.
Abstract:
Dedifferentiated chondrosarcoma is an aggressive mesenchymal tumor of the bone, and novel therapies are needed to improve its clinical outcomes. Patient-derived cell lines are essential tools for elucidating disease mechanisms associated with poor prognosis and for developing therapies. However, few lines and xenografts have been previously reported in dedifferentiated chondrosarcoma. We established a novel patient-derived dedifferentiated chondrosarcoma cell line, NCC-dCS1-C1. Primary dedifferentiated chondrosarcoma tissues were obtained at the time of surgery and subjected to primary tissue culture. The cell line was established and authenticated by assessing DNA microsatellite short tandem repeats. The cells maintained in monolayer cultures exhibited constant growth, spheroid formation capacity, and invasion ability. When the cells were implanted into mice, they exhibited histological features similar to those of the original tumor. Genomic analysis of single nucleotide polymorphisms showed aberrant genomic contents. The DNA sequencing revealed the absence of IDH1/2 mutations. The global targeted sequencing revealed that the cell line preserved homozygous deletion of CDKN2A and CREBBP. A proteomic study by mass spectrometry unveiled similar but distinct molecular backgrounds in the original tumor and the established cell line, suggesting that tumor cell functions might be altered during the establishment of the cell line. Using a screening approach, four anti-cancer drugs with anti-proliferative effects at a low concentration were identified. In conclusion, a novel dedifferentiated chondrosarcoma cell line, NCC-dCS1-C1, was successfully established from primary tumor tissues. The NCC-dCS1-C1 cell line will be a useful tool for investigations of the mechanisms underlying dedifferentiated chondrosarcomas.
Insights
A new patient-derived cell line, NCC-dCS1-C1, was developed for dedifferentiated chondrosarcoma research. This aggressive bone tumor model will aid in understanding disease mechanisms and developing novel therapies.
Area of Science:
- Oncology
- Cancer Biology
- Genetics
Background:
- Dedifferentiated chondrosarcoma is an aggressive bone tumor requiring new therapeutic strategies.
- Patient-derived cell lines are crucial for studying disease mechanisms and drug development.
- Limited cell lines and xenografts exist for dedifferentiated chondrosarcoma, hindering research.
Purpose of the Study:
- To establish and characterize a novel patient-derived cell line for dedifferentiated chondrosarcoma.
- To provide a valuable tool for investigating the molecular underpinnings and therapeutic targets of this rare cancer.
Main Methods:
- Primary dedifferentiated chondrosarcoma tissue was cultured to establish the NCC-dCS1-C1 cell line.
- Authentication included DNA microsatellite analysis.
- Characterization involved assessing growth, spheroid formation, invasion, in vivo xenografts, genomic profiling (SNP, DNA sequencing, targeted sequencing), and proteomic analysis.
Main Results:
- The NCC-dCS1-C1 cell line demonstrated stable growth, spheroid formation, and invasion capabilities.
- Xenografts in mice mirrored the original tumor's histology.
- Genomic analysis revealed CDKN2A and CREBBP homozygous deletions and no IDH1/2 mutations.
- Proteomic analysis showed similarities and differences between the cell line and the primary tumor.
- Four anti-cancer drugs with antiproliferative effects were identified through screening.
Conclusions:
- A novel, authenticated patient-derived cell line, NCC-dCS1-C1, was successfully established from dedifferentiated chondrosarcoma.
- This cell line serves as a valuable preclinical model for studying disease mechanisms and evaluating novel therapeutic interventions.
- The characterized genomic and proteomic profiles offer insights into dedifferentiated chondrosarcoma biology.
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