Astroglial atrophy associates with loss of nuclear S100A10 in the hippocampus of aged male tree shrews
Rodriguez-Callejas, J. d. D.; Irene-Fierro, M.; Aguilar-Navarro, S. G.; Fuchs, E.; Perez-Cruz, C.
Show abstract
Astrocytes are glial cells that participate in multiple physiological functions, such as protecting neurons against all types of damage. However, astrocytes develop morphological alterations during aging, such as decreased length, volume, and branch points of their processes, also known as astrocytic atrophy. Until now, the exact mechanism associated with the onset of atrophy is unknown. Tree shrew (Tupaia belangeri) is a long-lived animal from the Scadentia order that develops several age-dependent brain alterations. In this study, we analyzed the morphology of GFAP+ astrocytes in the hippocampal region of adult, old, and aged male tree shrews. Aged animals presented more GFAP+ astrocytes in the proximal subiculum, CA3, and CA2-CA1 subregions than younger animals, being significantly higher only in CA3. However, in aged subjects, the number of atrophic astrocytes was significantly higher in the dentate gyrus and CA2 subregion compared to old animals. Interestingly, in the proximal subiculum, astrocytes had a reduced arborization at all ages evaluated. S100A10, a protein overexpressed by neuroprotective-type astrocytes, was mainly found in the nucleus of astrocytes of adult and old subjects. However, in old and aged animals, S100A10 was located in the cytoplasmic compartment of atrophic astrocytes. Furthermore, in astrocytes of aged tree shrews, cytoplasmic inclusions of S100A10 colocalized with the nuclear export protein, Crm-1. These results suggest that the transport of S100A10 from the nucleus to the cytoplasmic compartment of astrocytes could be a process related to astroglial atrophy during the aging process in the hippocampus of three shrews.
Matching journals
The top 5 journals account for 50% of the predicted probability mass.
Similar papers in this journal
- Age and ketogenic diet have dissociable effects on synapse-related gene expression between hippocampal subregions 95%
- Early functional and cognitive declines measured by auditory evoked cortical potentials in Alzheimer's disease mice 94%
- Shifted dynamics of glucose metabolism in the hippocampus during aging 94%
Similar papers in this journal
- Loss of lamin-B1 and defective nuclear morphology are hallmarks of astrocyte senescence in vitro and in the aging human hippocampus 96%
- Resilience To Cognitive Aging Is Associated With Responsiveness Of Dentate Neurons Generated Throughout Adult Life 95%
- Telomerase Depletion Accelerates Ageing Of The Zebrafish Brain 95%
Similar papers in this journal
- Impaired cholesterol transport from aged astrocytes to neurons can be rescued by cannabinoids. 95%
- Neurotensin receptor 2 is induced in astrocytes and brain endothelial cells in relation to status epilepticus and neuroinflammation following pilocarpine administration in rats 93%
- Transcriptome network analysis link perinatal Staphylococcus epidermidis infection to microglia reprogramming in the immature hippocampus 92%
Similar papers in this journal
Similar papers in this journal
- Genetic Networks of Alzheimer’s Disease, Aging and Longevity in Humans 94%
- Arginase Inhibition Supports Survival and Differentiation of Neuronal Precursors in Adult Alzheimer's Disease Mice 94%
- SenolyticSynergy: An Attention-Based Network for Discovering Novel Senolytic Combinations via Human Aging Genomics 93%
"Similar papers" are the closest papers from that journal in the model's embedding space. They show what the match is built on, but the ranking comes mostly from a classifier over the whole training set, not from these examples alone.