Gene silencing of HIF-2α disrupts glioblastoma stem cell phenotype
Leora M Nusblat1, Shaili Tanna1, Charles M Roth1,2
1Department of Biomedical Engineering, Rutgers, The State University of New Jersey, Piscataway, NJ 08854, USA.
Aim:
Improved treatment strategies are desperately needed for eradicating cancer stem cells (CSCs), which drive malignancy and recurrence in glioblastoma multiforme. Hypoxic regions within the tumor microenvironment help maintain and promote the proliferation of CSCs. Here, we explored the effects of silencing hypoxia inducible factor-2α (HIF-2α) because of its specificity for CSCs within the hypoxic environment.
Methods:
Cancer stem cell neurospheres were formed by enriching from both the glioblastoma cell line U87 and from brain tumor stem cells isolated directly from human brain tumors. Silencing of human HIF-2α was performed using both commercial and in-house transfection of a validated short interfering RNA, with all results compared to an established non-silencing control short interfering RNA. Silencing of HIF-2α was established by Western blotting, and phenotypic effects were assayed by cell migration assays, cell viability measurements, and immunofluorescence staining of differentiation markers.
Results:
Transfection with either our previously reported pH-sensitive, cationic amphiphilic macromolecule-based delivery system or Lipofectamine was similarly effective in silencing HIF-2α. The chemotherapeutic resistance and neurosphere formation were reduced when HIF-2α was silenced. Migratory capacities in the presence of macrophage conditioned media were modulated. HIF-2α silencing was complementary to temozolomide treatment in producing phenotypic rather than cytotoxic effects.
Conclusion:
HIF-2α silencing under hypoxia inhibited CSC phenotypes while promoting differentiated cell phenotypes and is complementary to existing DNA alkylating treatments in inhibiting glioma CSC activity.
Insights
Silencing hypoxia-inducible factor-2α (HIF-2α) in glioblastoma cancer stem cells (CSCs) under hypoxia inhibits their malignant properties. This approach complements existing treatments by promoting cell differentiation rather than direct cell killing.
Area of Science:
- Oncology
- Molecular Biology
- Cancer Stem Cell Research
Background:
- Glioblastoma multiforme (GBM) malignancy and recurrence are driven by cancer stem cells (CSCs).
- Tumor hypoxia promotes CSC proliferation and survival.
- Hypoxia-inducible factor-2α (HIF-2α) is a key regulator in hypoxic CSCs.
Purpose of the Study:
- To investigate the therapeutic potential of silencing HIF-2α in GBM CSCs.
- To determine the effects of HIF-2α inhibition on CSC phenotypes under hypoxic conditions.
Main Methods:
- Human GBM cell lines and primary brain tumor stem cells were used to form neurospheres.
- Short interfering RNA (siRNA) was employed to silence HIF-2α expression.
- Phenotypic changes were assessed via cell migration, viability, and differentiation marker assays.
Main Results:
- HIF-2α silencing effectively reduced CSCs' chemotherapeutic resistance and neurosphere formation.
- Migration capabilities were modulated by HIF-2α inhibition.
- Silencing HIF-2α promoted phenotypic changes, complementing temozolomide treatment.
Conclusions:
- HIF-2α silencing in hypoxic GBM CSCs inhibits stemness and promotes differentiation.
- This strategy offers a complementary approach to DNA alkylating agents for targeting glioma CSCs.
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