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Diaz-Guerra, E.

Publications and source records attributed to Diaz-Guerra, E..

2 recordsLinked to original sources

APOE 4/4 promotes dysfunctional and inflammatory phenotypes concomitant with impaired maturation of hiPSC-derived astrocytes

Alzheimer's disease (AD) is the leading cause of dementia in the aging population, with the {varepsilon}4 allele of apolipoprotein E (APOE) being the strongest genetic risk factor. Although astrocytes are a major source of APOE, how APOE alleles affect astrocyte maturation and function remains unclear. We generated human induced pluripotent stem cell (hiPSC)-derived astrocytes from AD patients carrying {varepsilon}3/{varepsilon}3 and {varepsilon}4/{varepsilon}4 alleles and from healthy controls (HC). We also used isogenic gene-edited hiPSC lines homozygous for each APOE allele and an APOE knock-out line to identify allele-specific phenotypes and distinguish gain- from loss-of-function mechanisms. APOE 4/4 astrocyte cultures showed significant reductions in GFAP- and S100{beta}-positive cell percentages compared to APOE 2/2 and APOE 3/3, with no changes in GLT-1- and AQP4-positive cells. Astrocytes of all genotypes responded to IL-1{beta} + TNF by increasing proinflammatory cytokine expression and release, and to both IL-1{beta} + TNF and A{beta}1-42 by changing morphology, with APOE 4/4 astrocytes showing increased IL6 mRNA and morphological branching upon IL-1{beta} + TNF stimulation. Notably, under basal conditions, APOE 4/4 astrocytes showed significant reductions in glutamate uptake capacity and cell size alongside increased IL-6 release and CXCL3 mRNA expression. In A{beta}1-42 uptake experiments, the proportion of A{beta}+ astrocytes was higher in APOE 4/4 than in APOE KO cultures. Most phenotypes were absent in APOE KO astrocytes, suggesting that the effects of APOE 4/4 were predominantly mediated through gain-of-function mechanisms. Our results indicate that APOE 4/4 alters astrocyte morphological and molecular maturation while promoting inflammation, disturbing glutamate and A{beta} handling under basal conditions. It suggests that APOE {varepsilon}4/{varepsilon}4 genotype disrupts astrocyte development and key processes of cellular homeostasis early in Alzheimer's disease etiopathology.

neuroscience↗

APOE4 impacts cortical neurodevelopment and alters network formation in human brain organoids

Apolipoprotein E4 (APOE4) is the leading genetic risk factor for Alzheimers disease. While most studies examine the role of APOE4 in aging, imaging, and cognitive assessments reveal that APOE4 influences brain structure and function as early as infancy. Here, we examined human-relevant cellular phenotypes across neurodevelopment using induced pluripotent stem cell (iPSC) derived cortical and ganglionic eminence organoids (COs and GEOs). In COs, we showed that APOE4 decreased BRN2+ and SATB2+ cortical neurons, increased astrocytes and outer radial glia, and was associated with increased cell death and dysregulated GABA-related gene expression. In GEOs, APOE4 accelerated maturation of neural progenitors and neurons. Multi-electrode array recordings in assembloids revealed that APOE4 disrupted network formation and altered response to GABA, resulting in heightened excitability and synchronicity. Together, our data provides new insights into how APOE4 may influence cortical neurodevelopmental processes and network formation in the human brain.

neuroscience↗