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Cortical brain organoid slices (cBOS) for the study of human neural cells in minimal networks.
Petersilie, Laura; Heiduschka, Sonja; Nelson, Joel S E; Neu, Louis A; Le, Stephanie; Anand, Ruchika; Kafitz, Karl W; Prigione, Alessandro; Rose, Christine R.
Afiliação
  • Petersilie L; Institute of Neurobiology, Faculty of Mathematics and Natural Sciences, Heinrich Heine University Duesseldorf, 40225 Duesseldorf, Germany.
  • Heiduschka S; Department of General Pediatrics, Neonatology and Pediatric Cardiology, University Children's Hospital and Heinrich Heine University Duesseldorf, 40225 Duesseldorf, Germany.
  • Nelson JSE; Institute of Neurobiology, Faculty of Mathematics and Natural Sciences, Heinrich Heine University Duesseldorf, 40225 Duesseldorf, Germany.
  • Neu LA; Institute of Neurobiology, Faculty of Mathematics and Natural Sciences, Heinrich Heine University Duesseldorf, 40225 Duesseldorf, Germany.
  • Le S; Department of General Pediatrics, Neonatology and Pediatric Cardiology, University Children's Hospital and Heinrich Heine University Duesseldorf, 40225 Duesseldorf, Germany.
  • Anand R; Institute of Biochemistry and Molecular Biology I, Medical Faculty and University Hospital Duesseldorf, Heinrich Heine University Duesseldorf, 40225 Duesseldorf, Germany.
  • Kafitz KW; Institute of Neurobiology, Faculty of Mathematics and Natural Sciences, Heinrich Heine University Duesseldorf, 40225 Duesseldorf, Germany.
  • Prigione A; Department of General Pediatrics, Neonatology and Pediatric Cardiology, University Children's Hospital and Heinrich Heine University Duesseldorf, 40225 Duesseldorf, Germany.
  • Rose CR; Institute of Neurobiology, Faculty of Mathematics and Natural Sciences, Heinrich Heine University Duesseldorf, 40225 Duesseldorf, Germany.
iScience ; 27(4): 109415, 2024 Apr 19.
Article em En | MEDLINE | ID: mdl-38523789
ABSTRACT
Brain organoids derived from human pluripotent stem cells are a promising tool for studying human neurodevelopment and related disorders. Here, we generated long-term cultures of cortical brain organoid slices (cBOS) grown at the air-liquid interphase from regionalized cortical organoids. We show that cBOS host mature neurons and astrocytes organized in complex architecture. Whole-cell patch-clamp demonstrated subthreshold synaptic inputs and action potential firing of neurons. Spontaneous intracellular calcium signals turned into synchronous large-scale oscillations upon combined disinhibition of NMDA receptors and blocking of GABAA receptors. Brief metabolic inhibition to mimic transient energy restriction in the ischemic brain induced reversible intracellular calcium loading of cBOS. Moreover, metabolic inhibition induced a reversible decline in neuronal ATP as revealed by ATeam1.03YEMK. Overall, cBOS provide a powerful platform to assess morphological and functional aspects of human neural cells in intact minimal networks and to address the pathways that drive cellular damage during brain ischemia.
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Texto completo: 1 Coleções: 01-internacional Base de dados: MEDLINE Idioma: En Revista: IScience Ano de publicação: 2024 Tipo de documento: Article País de afiliação: Alemanha País de publicação: Estados Unidos

Texto completo: 1 Coleções: 01-internacional Base de dados: MEDLINE Idioma: En Revista: IScience Ano de publicação: 2024 Tipo de documento: Article País de afiliação: Alemanha País de publicação: Estados Unidos