GSK‑3 inhibitor CHIR99021 enriches glioma stem‑like cells
Yang Yang1, Qin-Qin Wang2, Oliver Bozinov1
1Department of Neurosurgery, University Hospital of Zurich, University of Zurich, CH‑8091 Zurich, Switzerland.
Abstract:
Glioblastoma (GBM) is the most prevalent and lethal primary intrinsic brain cancer. The disease is essentially incurable, with glioblastomas characterized by resistance to both chemotherapy and radiotherapy, as well as by rapid tumor progression, all of which are mainly ascribed to glioma stem‑like cells (GSLCs). In the present study, an improved model that is more similar to clinical GBM was constructed. Twenty clinical glioma samples were collected to obtain primary low‑grade tumor cells. The cells were either maintained in serum‑free medium as primary glioma‑based cells (PGBCs) or cultured in the same medium with CHIR99021 as GSLCs. Then, the molecular and ultrastructural differences between the two cell groups were determined. Furthermore, the proliferation and migration of the GSLCs were examined and the potential mechanisms were investigated. Finally, temozolomide resistance in vitro and in the mouse model was assessed to study the properties of the induced GSLCs. The primary low‑grade tumor cells extracted from surgical samples were enriched with GSLC properties, with high expression levels of CD133 and Nestin in 100 nM CHIR99021. The GSLCs exhibited high proliferation and migration. Furthermore, the expression of the PI3K/AKT signaling pathway and that of related genes and proteins were significantly enhanced by CHIR99021. The animal study also revealed high levels of STAT3, mTOR, NF‑κB, and VEGF in the GSLC‑transplanted mice. CHIR99021 could stably enhance GSLC properties in patient‑derived glioma samples. It may provide a useful model for further study, helping to understand the pathogenesis of therapeutic resistance and to screen drug candidates.
Insights
Researchers developed a new model for glioblastoma, a lethal brain cancer, by inducing glioma stem‑like cells (GSLCs) with CHIR99021. This model helps study therapeutic resistance and screen new drugs.
Area of Science:
- Neuro-oncology
- Cancer Stem Cell Biology
Background:
- Glioblastoma (GBM) is a highly aggressive brain tumor with poor prognosis.
- Therapeutic resistance and rapid progression in GBM are largely attributed to glioma stem‑like cells (GSLCs).
Purpose of the Study:
- To develop an improved in vitro model of clinical glioblastoma.
- To characterize induced glioma stem‑like cells (GSLCs) and investigate their properties and the underlying molecular mechanisms.
Main Methods:
- Primary low‑grade glioma cells were cultured with or without CHIR99021 to induce GSLCs.
- Molecular, ultrastructural, proliferation, migration, and temozolomide resistance analyses were performed.
- In vivo studies in a mouse model were conducted to assess tumor characteristics.
Main Results:
- CHIR99021 treatment successfully induced GSLC properties, including high CD133 and Nestin expression, enhanced proliferation, and migration.
- The PI3K/AKT signaling pathway was significantly upregulated in GSLCs.
- GSLC-transplanted mice showed elevated levels of STAT3, mTOR, NF‑κB, and VEGF.
Conclusions:
- CHIR99021 is effective in stably inducing GSLC properties in patient-derived glioma samples.
- This improved model offers a valuable platform for understanding GBM pathogenesis, therapeutic resistance, and drug discovery.
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