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Updated: Apr 23, 2026

Isolation and Characterization of Tumor-initiating Cells from Sarcoma Patient-derived Xenografts
Published on: June 13, 2019
Targeting cancer stem-like cells as an approach to defeating cellular heterogeneity in Ewing sarcoma
Sandrine Cornaz-Buros1, Nicolo Riggi2, Claudio DeVito3
1Experimental Pathology Service, CHUV and University of Lausanne, Lausanne, Switzerland.
Abstract:
Plasticity in cancer stem-like cells (CSC) may provide a key basis for cancer heterogeneity and therapeutic response. In this study, we assessed the effect of combining a drug that abrogates CSC properties with standard-of-care therapy in a Ewing sarcoma family tumor (ESFT). Emergence of CSC in this setting has been shown to arise from a defect in TARBP2-dependent microRNA maturation, which can be corrected by exposure to the fluoroquinolone enoxacin. In the present work, primary ESFT from four patients containing CD133(+) CSC subpopulations ranging from 3% to 17% of total tumor cells were subjected to treatment with enoxacin, doxorubicin, or both drugs. Primary ESFT CSC and bulk tumor cells displayed divergent responses to standard-of-care chemotherapy and enoxacin. Doxorubicin, which targets the tumor bulk, displayed toxicity toward primary adherent ESFT cells in culture but not to CSC-enriched ESFT spheres. Conversely, enoxacin, which enhances miRNA maturation by stimulating TARBP2 function, induced apoptosis but only in ESFT spheres. In combination, the two drugs markedly depleted CSCs and strongly reduced primary ESFTs in xenograft assays. Our results identify a potentially attractive therapeutic strategy for ESFT that combines mechanism-based targeting of CSC using a low-toxicity antibiotic with a standard-of-care cytotoxic drug, offering immediate applications for clinical evaluation.
Insights
Combining enoxacin with doxorubicin effectively targets cancer stem-like cells (CSCs) in Ewing sarcoma family tumors (ESFT). This strategy depletes CSCs and reduces tumor growth, offering a promising new therapeutic approach for ESFT.
Area of Science:
- Oncology
- Molecular Biology
- Cancer Research
Background:
- Cancer stem-like cells (CSCs) contribute to tumor heterogeneity and treatment resistance.
- In Ewing sarcoma family tumors (ESFT), CSC emergence is linked to impaired microRNA maturation due to TARBP2 defects.
- Enoxacin, a fluoroquinolone, can correct TARBP2-dependent microRNA maturation defects.
Purpose of the Study:
- To evaluate the efficacy of combining enoxacin with doxorubicin for targeting CSCs in ESFT.
- To assess the differential responses of ESFT CSCs and bulk tumor cells to enoxacin and doxorubicin.
Main Methods:
- Primary ESFT samples with CD133(+) CSC subpopulations were treated with enoxacin, doxorubicin, or both.
- In vitro assays assessed drug toxicity on adherent ESFT cells and ESFT spheres.
- In vivo efficacy was evaluated using xenograft models.
Main Results:
- Doxorubicin showed toxicity to adherent ESFT cells but not CSC-enriched spheres.
- Enoxacin induced apoptosis specifically in ESFT spheres by enhancing microRNA maturation.
- The combination therapy significantly depleted CSCs and reduced tumor burden in xenografts.
Conclusions:
- Combining enoxacin with doxorubicin presents a novel therapeutic strategy for ESFT.
- This approach targets CSCs effectively, offering potential for improved clinical outcomes.
- The combination therapy warrants further clinical evaluation for ESFT treatment.
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