Author:
Luinenburg Mark J.,Scheper Mirte,Sørensen Frederik N. F.,Anink Jasper J.,Van Hecke Wim,Korshunova Irina,Jansen Floor E.,Riney Kate,van Eijsden Pieter,Gosselaar Peter,Mills James D.,Kalf Rozemarijn S.,Zimmer Till S.,Broekaart Diede W. M.,Khodosevich Konstantin,Aronica Eleonora,Mühlebner Angelika
Abstract
IntroductionConstitutive activation of the mTOR pathway, as observed in Tuberous Sclerosis Complex (TSC), leads to glial dysfunction and subsequent epileptogenesis. Although astrocytes are considered important mediators for synaptic clearance and phagocytosis, little is known on how astrocytes contribute to the epileptogenic network.MethodsWe employed singlenuclei RNA sequencing and a hybrid fetal calf serum (FCS)/FCS-free cell culture model to explore the capacity of TSC-derived astrocytes to maintain glutamate homeostasis and clear debris in their environment.ResultsWe found that TSC astrocytes show reduced maturity on RNA and protein level as well as the inability to clear excess glutamate through the loss of both enzymes and transporters complementary to a reduction of phagocytic capabilities.DiscussionOur study provides evidence of mechanistic alterations in TSC astrocytes, underscoring the significant impairment of their supportive functions. These insights enhance our understanding of TSC pathophysiology and hold potential implications for future therapeutic interventions.
Subject
Cellular and Molecular Neuroscience
Cited by
2 articles.
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