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Updated: May 2, 2026

Chemogenetic Regulation in Reprogrammed Stem Cell-derived Precursor Cells in Treating Neurodegenerative Diseases
Published on: May 2, 2025
Valproate reverts zinc and potassium imbalance in schizophrenia-derived reprogrammed cells
Bruna da Silveira Paulsen1, Simone Coutinho Cardoso2, Mariana Paranhos Stelling3
1Institute of Biomedical Sciences, Federal University of Rio de Janeiro, Avenida Carlos Chagas, 373, bloco K, 2 andar, sala 27, Rio de Janeiro 21941, Brazil; D'Or Institute for Research Education (IDOR), Rua Diniz Cordeiro, 30, Rio de Janeiro 22281, Brazil.
Abstract:
Schizophrenia has been considered a devastating clinical syndrome rather than a single disease. Nevertheless, the mechanisms behind the onset of schizophrenia have been only partially elucidated. Several studies propose that levels of trace elements are abnormal in schizophrenia; however, conflicting data generated from different biological sources prevent conclusions being drawn. In this work, we used synchrotron radiation X-ray microfluorescence spectroscopy to compare trace element levels in neural progenitor cells (NPCs) derived from two clones of induced pluripotent stem cell lines of a clozapine-resistant schizophrenic patient and two controls. Our data reveal the presence of elevated levels of potassium and zinc in schizophrenic NPCs. Neural cells treated with valproate, an adjunctive medication for schizophrenia, brought potassium and zinc content back to control levels. These results expand the understanding of atomic element imbalance related to schizophrenia and may provide novel insights for the screening of drugs to treat mental disorders.
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