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  Non-cell-autonomous regulation of interneuron specification mediated by extracellular vesicles

Pipicelli, F., Baumann, N., Di Giaimo, R., Forero-Echeverry, A., Kyrousi, C., Bonrath, R., et al. (2023). Non-cell-autonomous regulation of interneuron specification mediated by extracellular vesicles. SCIENCE ADVANCES, 9(20). doi:10.1126/sciadv.add8164.

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Pipicelli, Fabrizia1, 2, Autor           
Baumann, Natalia, Autor
Di Giaimo, Rossella1, Autor           
Forero-Echeverry, Andrea, Autor
Kyrousi, Christina1, Autor           
Bonrath, Rebecca, Autor
Maccarrone, Giuseppina3, Autor           
Jabaudon, Denis, Autor
Cappello, Silvia1, Autor           
Affiliations:
1Max Planck Research Group Developmental Neurobiology (Silvia Cappello), Max Planck Institute of Psychiatry, Max Planck Society, ou_2173645              
2IMPRS Translational Psychiatry, Max Planck Institute of Psychiatry, Max Planck Society, Kraepelinstr. 2-10, 80804 Munich, DE, ou_3318616              
3Max Planck Institute of Psychiatry, Max Planck Society, ou_1607137              

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 Zusammenfassung: Disruption in neurogenesis and neuronal migration can influence the assembly of cortical circuits, affecting the excitatory-inhibitory balance and resulting in neurodevelopmental and neuropsychiatric disorders. Using ventral cerebral organoids and dorsoventral cerebral assembloids with mutations in the extracellular matrix gene LGALS3BP, we show that extracellular vesicles released into the extracellular environment regulate the molecular differentiation of neurons, resulting in alterations in migratory dynamics. To investigate how extra -cellular vesicles affect neuronal specification and migration dynamics, we collected extracellular vesicles from ventral cerebral organoids carrying a mutation in LGALS3BP, previously identified in individuals with cortical malformations and neuropsychiatric disorders. These results revealed differences in protein composition and changes in dorsoventral patterning. Proteins associated with cell fate decision, neuronal migration, and extra -cellular matrix composition were altered in mutant extracellular vesicles. Moreover, we show that treatment with extracellular vesicles changes the transcriptomic profile in neural progenitor cells. Our results indicate that neuronal molecular differentiation can be influenced by extracellular vesicles.

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 Datum: 2023
 Publikationsstatus: Erschienen
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 Identifikatoren: ISI: 000996685800022
DOI: 10.1126/sciadv.add8164
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Titel: SCIENCE ADVANCES
Genre der Quelle: Zeitschrift
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Seiten: - Band / Heft: 9 (20) Artikelnummer: - Start- / Endseite: - Identifikator: ISSN: 2375-2548