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Astrocytes interact intimately with degenerating motor neurons in mouse amyotrophic lateral sclerosis (ALS)

✍ Scribed by John B. Levine; Jiming Kong; Mark Nadler; Zuoshang Xu


Publisher
John Wiley and Sons
Year
1999
Tongue
English
Weight
879 KB
Volume
28
Category
Article
ISSN
0894-1491

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✦ Synopsis


Astrocytic proliferation and hypertrophy (astrogliosis) are associated with neuronal injury. However, neither the temporal nor the spatial relationship between astrocytes and injured neurons is clear, especially in neurodegenerative diseases. We investigated these questions in a mouse amyotrophic lateral sclerosis (ALS) model. The initial increase in astrogliosis coincided with the onset of clinical disease and massive mitochondrial vacuolation in motor neurons. After disease onset, astrogliosis increased further in parallel with the number of degenerating motor neurons. Examination of individual astrocytes by three-dimensional reconstruction revealed that astrocytes extended their processes toward, wrapped around, and sometimes penetrated vacuoles derived from neuronal mitochondria. These results show a close temporal correlation between the onset of neuronal degeneration and the beginning of astrogliosis in this neurodegenerative disease and reveal a novel spatial relationship that is consistent with the view that astrocytes play an active role in the neuronal degeneration process.


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Kif1BΞ² isoform is enriched in motor neur
✍ Laura Conforti; Carlotta Dell'Agnello; Novella Calvaresi; Massimo Tortarolo; And πŸ“‚ Article πŸ“… 2003 πŸ› John Wiley and Sons 🌐 English βš– 536 KB

## Abstract The kinesin superfamily motor protein Kif1B is expressed in two isoforms, Kif1BΞ± and Kif1BΞ², with distinct cargo‐binding domains. We examined the mRNA distribution of the two isoforms in adjacent sections of brain and spinal cord of adult mice using in situ hybridization analysis. Kif1B