Functional Analysis of Antipsychotics in Human iPSC-Based Neural Progenitor 2D and 3D Schizophrenia Models

Farkas, Kiara Gitta [Farkas, Kiara Gitta (Őssejtbiológia), szerző] Molekuláris Élettudományi Intézet (HRN TTK); Doktori Iskola (SE); Vincze, Katalin [Vincze, Katalin (Pszichiátriai gen...), szerző] Molekuláris Élettudományi Intézet (HRN TTK); Doktori Iskola (SE); Tordai, Csongor [Tordai, Csongor Balázs, szerző] Molekuláris Élettudományi Intézet (HRN TTK); Özgen, Ece İlay; Gürler, Derin; Deli, Vera; Lilienberg, Julianna [Lilienberg, Julianna (Molekuláris és se...), szerző]; Erdei, Zsuzsa [Erdei, Zsuzsa (fiatal kutató), szerző] Molekuláris Élettudományi Intézet (HRN TTK); Sarkadi, Balázs [Sarkadi, Balázs (biofizika), szerző] Molekuláris Élettudományi Intézet (HRN TTK); Réthelyi, János Miklós [Réthelyi, János (Pszichiátria- kog...), szerző] Pszichiátriai és Pszichoterápiás Klinika (SE / AOK / K); Apáti, Ágota ✉ [Apáti, Ágota (Őssejt kutatás), szerző] Molekuláris Élettudományi Intézet (HRN TTK)

Angol nyelvű Szakcikk (Folyóiratcikk) Tudományos
Megjelent: INTERNATIONAL JOURNAL OF MOLECULAR SCIENCES 1661-6596 1422-0067 26 (9) Paper: 4444 , 17 p. 2025
  • SJR Scopus - Inorganic Chemistry: D1
Azonosítók
Támogatások:
  • Hungarian National Brain Research Program(2017-1.2.1-NKP-2017-00002)
  • (K128369)
  • (TKP2021-EGA-25)
  • (2024-1.1.1-KKV_FÓKUSZ-2024-00022)
  • (GINOP-2.1.1-15-2015-00369)
Schizophrenia is a complex psychiatric disorder of complex etiology. Despite decades of antipsychotic drug development and treatment, the mechanisms underlying cellular drug effects remain incompletely understood. Induced pluripotent stem cell (iPSC)-based disease and pharmacological modelling offer new avenues for drug development. In this study, we explored the development of two- and three-dimensional neural progenitor cultures and the impact of different antipsychotics in a schizophrenia model. Four human iPSC lines, including two carrying a de novo ZMYND11 gene mutation associated with schizophrenia, were differentiated into hippocampal neural progenitor cells (NPCs), cultured either in monolayers or as 3D spheroids. While in monolayers the proliferation of the NPCs was similar, spheroids showed significant differences in scattered cell number and outgrowth size between schizophrenia mutant and wild-type NPCs. Since there is only limited information about the effects of antipsychotic agents on neural progenitor cell proliferation and differentiation, we investigated the effects of three molecules, representing three subgroups of antipsychotics, in the 2D and 3D NPC models. Our findings suggest that cell adhesion may play a crucial role in the molecular disease pathways of schizophrenia, highlighting the value of spheroid models for mechanistic and drug development studies. These studies may significantly help our understanding of the effects of schizophrenia on neural development and the response of progenitors to antipsychotic medications.
Hivatkozás stílusok: IEEEACMAPAChicagoHarvardCSLMásolásNyomtatás
2026-09-16 01:38