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Oliveira, C. B.

Publications and source records attributed to Oliveira, C. B..

2 recordsLinked to original sources

Mitotic catastrophe and other cellular instability events in sodium valproate-treated HeLa cells

Valproic acid/sodium valproate (VPA) is a widely prescribed anticonvulsant and has also been used against certain tumor cells. It is a potent modulator of gene expression. Its ability to induce apoptosis has been well documented in HeLa cells. However, another form of cell death - mitotic catastrophe - has not yet been explored in VPA-treated HeLa cells. Here, we investigated the effects of VPA treatment on mitotic catastrophe characteristics, including morphological features and their frequencies, fluorescence intensity signals of caspase-2 and p53, and the expression and abundance of DNMT1 and DNMT3B. An increased frequency of mitotic catastrophe was observed not only morphologically, but also through enhanced induction of caspase-2, involvement of p53, at least under more drastic VPA treatment, but without a decrease in DNMT1 or DNMT3B levels. Additionally, enhancement of mitotic catastrophe coincided with a reduction in mitotic chromosome abnormalities. Increased DNMT3B expression following VPA action, may be favored by previously reported chromatin decondensation induced by this drug. Enhanced CpG methylation of specific DNA sites could thus be promoted. In conclusion, VPA was shown to trigger metabolic pathways linked to different forms of cell death in HeLa cells, supporting its oncosuppressive potential.

cell biology↗

Sodium valproate induces chromatin remodeling in U-251MG glioblastoma cells

The development and progression of glioblastoma, the most aggressive malignant intracranial tumor with a poor prognosis, are influenced by mutations, the overexpression of oncogenes, and epigenetic factors, particularly those related to DNA methylation status and histone post-translational modifications. Valproic acid (VPA), a classic histone deacetylase (HDAC) inhibitor, has shown promise both on its own and in combination with other drugs as a therapeutic agent against various solid tumors, including gliomas. Given VPAs reported effects on chromatin supraorganization and expression activity in several cell types, we studied textural features that may indicate changes in chromatin structure in U-251MG glioblastoma cells cultured in the presence of VPA, utilizing image cytometry. For comparison, cells treated with 5-aza-CdR served as a positive control for DNA demethylation. Chromatin remodeling was observed in VPA-treated cells, which displayed decreased HDAC activity and increased histone H3 acetylation, whereas no such changes were detected in 5-aza-CdR-treated cells. These findings suggest that, despite the significance of DNA methylation alterations in glioblastoma cells, the chromatin remodeling observed through image cytometry in VPA-treated U-251MG cells is more closely associated with induced changes involving histone modifications rather than with DNA demethylation.

cell biology↗