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gao, f.

Publications and source records attributed to gao, f..

2 recordsLinked to original sources

Reduced brain glutathione levels during normal aging are associated with visuospatial memory

During aging, the brain is subject to greater oxidative stress (OS), which is thought to play a critical role in cognitive impairment. Glutathione (GSH), as a major antioxidant in the brain, can be used to combatting OS. However, how brain GSH levels vary with age and their associations with cognitive function remain unclear. In this study, we combined point-resolved spectroscopy and edited spectroscopy sequences to investigate GSH levels in the anterior cingulate cortex (ACC), posterior cingulate cortex (PCC), and occipital cortex (OC) of 276 healthy participants (166 females, age range 20-70 years) and examined their relationships with age and cognitive function. The results revealed decreased GSH levels with age in the PCC among all participants. Notably, the timecourse of GSH level changes in the PCC and ACC differed between males and females. Additionally, positive correlations were observed between GSH levels in the PCC and OC and visuospatial memory. Taken together, these findings enhance our understanding of the brain GSH timecourse during normal aging and associations with sex and memory, which is an essential first step for understanding the neurochemical underpinnings of OS-related diseases.

neuroscience↗

Genetic structure analysis on leopard cat reveals the effects of habitat fragmentation on subpopulation differentiation in Beijing

In the face of habitat shrinkage and segregation, the survival of wild cats looks bleak. Interpreting the population genetic structure during habitat fragmentation is critical to planning effective management strategies. To reveal the segregation effects of road construction and human settlement on population genetic structure, we noninvasively analyzed fecal DNA samples from leopard cats (Prionailurus bengalensis) from five nature reserves in mountainous areas around Beijing. We focused on molecular microsatellite markers and the mitochondrial control region. A total of 112 individual leopard cats were identified among 601 samples of scat, and generally moderate population genetic diversity was detected. Microsatellite marker-based gene flow (Nm) and STRUCTURE analyses showed no obvious discrepancies among the subpopulations; however, the calculation of genetic distance and construction of a phylogenetic tree of the mitochondrial control region revealed a trend toward differentiation from the other subpopulations in the Songshan subpopulation, which indicates habitat fragmentation effects. Because the isolated Songshan subpopulation may evolve independently, we suggest that its genetic structure be monitored every 5 years to detect any changes and that individuals be introduced as needed to maintain the viability of this subpopulation.

genetics↗