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Jiwaji, Z.

Publications and source records attributed to Jiwaji, Z..

2 recordsLinked to original sources

Astrocytes control motor neuronal mitochondrial axonal transport deficits in C9ORF72 ALS.

Disrupted axonal transport and astrocyte dysfunction are implicated in amyotrophic lateral sclerosis (ALS). Here, we show these are intrinsically linked: human induced pluripotent stem cell-derived astrocytes carrying the C9ORF72 mutation disrupt axonal transport and mitochondrial function in motor neurons (MNs). Conversely, either isogenic gene-corrected astrocytes or selectively boosting C9ORF72-astrocyte mitochondrial bioenergetics rescue axonal transport deficits in C9ORF72-MNs. Thus, astrocytes have a dominant effect on axonal mitochondrial transport in the context of ALS.

neuroscience↗

Astrocyte-Oligodendrocyte interaction regulates central nervous system regeneration

Failed regeneration of myelin around neuronal axons following central nervous system damage contributes to nerve dysfunction and clinical decline in various neurological conditions, for which there is an unmet therapeutic demand1,2. Here, we show that interaction between glial cells - astrocytes and mature myelin-forming oligodendrocytes - is a critical determinant of remyelination. Astrocytes support the survival of regenerating oligodendrocytes, via downregulation of the Nrf2 pathway associated with increased astrocytic cholesterol biosynthesis pathway activation. Remyelination fails following sustained astrocytic Nrf2 activation yet is restored by either cholesterol biosynthesis/efflux stimulation, or Nrf2 inhibition using the existing therapeutic Luteolin. We identify that astrocyte-oligodendrocyte interaction regulates remyelination, and reveal a drug strategy for central nervous system regeneration centred on targeting this interaction.

neuroscience↗