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Activation of Neurotoxic Astrocytes Due to Mitochondrial Dysfunction Triggered by Mutation. | LitMetric

AI Article Synopsis

  • Mitochondrial diseases cause neuronal death and depletion of mitochondrial DNA (mtDNA), with astrocytes potentially playing a damaging role in neurodegeneration.
  • Research using induced pluripotent stem cells (iPSCs) from patients with POLG mutations showed that the resulting astrocytes experienced significant mitochondrial dysfunction and developed a toxic phenotype.
  • When these dysfunctioning astrocytes interacted with neurons, they induced neuronal death, highlighting a novel toxic contribution of astrocytes to the progression of POLG-related diseases.

Article Abstract

Mitochondrial diseases are associated with neuronal death and mtDNA depletion. Astrocytes respond to injury or stimuli and damage to the central nervous system. Neurodegeneration can cause astrocytes to activate and acquire toxic functions that induce neuronal death. However, astrocyte activation and its impact on neuronal homeostasis in mitochondrial disease remain to be explored. Using patient cells carrying mutations, we generated iPSCs and then differentiated these into astrocytes. POLG astrocytes exhibited mitochondrial dysfunction including loss of mitochondrial membrane potential, energy failure, loss of complex I and IV, disturbed NAD/NADH metabolism, and mtDNA depletion. Further, POLG derived astrocytes presented an A1-like reactive phenotype with increased proliferation, invasion, upregulation of pathways involved in response to stimulus, immune system process, cell proliferation and cell killing. Under direct and indirect co-culture with neurons, POLG astrocytes manifested a toxic effect leading to the death of neurons. We demonstrate that mitochondrial dysfunction caused by mutations leads not only to intrinsic defects in energy metabolism affecting both neurons and astrocytes, but also to neurotoxic damage driven by astrocytes. These findings reveal a novel role for dysfunctional astrocytes that contribute to the pathogenesis of POLG diseases.

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Source
http://www.ncbi.nlm.nih.gov/pmc/articles/PMC11186360PMC
http://dx.doi.org/10.7150/ijbs.93445DOI Listing

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