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Differentiation therapy: targeting human renal cancer stem cells with interleukin 15
Sandy Azzi1, Stefania Bruno, Julien Giron-Michel
1INSERM UMR, Paul Brousse Hospital, Villejuif, France.
Background:
Many renal cancer patients experience disease recurrence after immunotherapy or combined treatments due to persistence of cancer stem cells (CSCs). The identification of reliable inducers of CSC differentiation may facilitate the development of efficient strategies for eliminating CSCs. We investigated whether interleukin 15 (IL-15), a regulator of kidney homeostasis, induces the differentiation of CD105-positive (CD105(+)) CSCs from human renal cancers.
Methods:
CD105(+) CSCs were cultured to preserve their stem cell properties and treated with recombinant human IL-15 (rhIL-15) to evaluate their ability to differentiate, to acquire sensitivity to chemotherapeutic drugs, and to form spheroids in vitro and tumors in vivo. Expression of stem cell and epithelial markers were studied by flow cytometry, immunocytochemistry, and immunoblotting. Identification of a CSC side population fraction and its sensitivity to chemotherapy drugs and expression of ATP-binding cassette (ABC) transporters and aldehyde dehydrogenase (ALDH) activities were determined by flow cytometry. Spheroid formation was determined in limiting dilution assay. Xenograft tumors were generated in severe combined immunodeficient mice (n = 12-18 mice per group). All statistical tests were two-sided.
Results:
CD105(+) CSCs treated with rhIL-15 at 10 pg/mL differentiated into cells expressing epithelial markers. rhIL-15 induced epithelial differentiation of all CD105(+) CSCs subsets and blocked CSC self-renewal (sphere-forming ability) and their tumorigenic properties in severe combined immunodeficient mice. Vinblastine and paclitaxel induced statistically significant higher levels of apoptosis in rhIL-15-differentiated epithelial cells compared with CD105(+) CSCs (mean percentage of apoptotic cells, vinblastine: 33% vs 16.5%, difference = 16.5%, 95% confidence interval = 12.25% to 20.74%, P = .0025; paclitaxel: 35% vs 11.6%, difference = 23.4%, 95% confidence interval = 22.5% to 24.24%, P = .0015). The higher sensitivity of rhIL-15-differentiated epithelial cells to chemotherapeutic drugs was associated with loss of detoxifying mechanisms such as ALDH and ABC transporter activities.
Conclusion:
IL-15 directs the epithelial differentiation of renal CSCs and meets the criteria for a treatment strategy: CSC pool depletion and generation of differentiated nontumorigenic cells that are sensitive to chemotherapeutic agents.
Insights
Interleukin 15 (IL-15) induces differentiation of renal cancer stem cells (CSCs), making them sensitive to chemotherapy. This approach depletes the CSC pool and generates non-tumorigenic cells, offering a new treatment strategy.
Area of Science:
- Oncology
- Cancer Stem Cell Biology
- Immunology
Background:
- Renal cancer recurrence is often linked to persistent cancer stem cells (CSCs).
- Targeting CSCs is crucial for effective cancer treatment strategies.
- Interleukin 15 (IL-15) regulates kidney homeostasis and was investigated for its role in CSC differentiation.
Purpose of the Study:
- To investigate if Interleukin 15 (IL-15) can induce differentiation of CD105-positive (CD105(+)) renal cancer stem cells (CSCs).
- To assess the impact of IL-15 on CSC self-renewal, tumorigenic potential, and sensitivity to chemotherapy.
Main Methods:
- CD105(+) CSCs were cultured and treated with recombinant human IL-15 (rhIL-15).
- Cell differentiation, self-renewal (spheroid formation), and tumorigenicity in vivo were evaluated.
- Expression of stem cell and epithelial markers, as well as drug sensitivity and detoxifying mechanisms (ALDH, ABC transporters), were analyzed.
Main Results:
- rhIL-15 treatment induced epithelial differentiation in CD105(+) CSCs.
- IL-15 inhibited CSC self-renewal and tumorigenic properties.
- Differentiated cells showed increased sensitivity to vinblastine and paclitaxel due to reduced ALDH and ABC transporter activity.
Conclusions:
- IL-15 effectively directs the epithelial differentiation of renal CSCs.
- This differentiation process depletes the CSC pool and generates cells sensitive to chemotherapy.
- IL-15 represents a promising therapeutic strategy for renal cancer by targeting CSCs.
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