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Biology subjects

Hsiao, C.

Publications and source records attributed to Hsiao, C..

2 recordsLinked to original sources

HIPPOCAMPAL TAU RELATED SIGNAL INDEXES HYPEREXCITABILITY AND NREM SLEEP MEMORY DYSFUNCTION IN TEMPORAL LOBE EPILEPSY

Background Sleep and memory disturbances are common in temporal lobe epilepsy (TLE), yet their relationship with tau-targeted neuroimaging measures remains unclear. We investigated whether in-vivo temporal 18F-MK6240 tracer retention relates to seizure burden, non-rapid eye movement (NREM) sleep microstructure, and memory performance in TLE. Methods This cross-sectional study was conducted from 2019 to 2024 at the Montreal Neurological Institute-Hospital. Eligible patients had unilateral TLE diagnosed according to International League Against Epilepsy criteria and underwent overnight electroencephalography (EEG) recordings, research-protocol 3T magnetic resonance imaging, and 18F-MK6240 positron emission tomography. Regional 18F-MK6240 standardized uptake value ratios (SUVRs), using the cerebellum as the reference region, were quantified in the ipsilateral hippocampus (defined a priori as the primary region of interest), as well as in peri-hippocampal and lateral temporal regions. Electroclinical and neuropsychological measures, including seizure burden (high vs low), N2 interictal epileptiform discharge frequency (frequent vs non-frequent), and memory performance (impaired vs intact), were classified according to predefined clinical criteria. N2 spindle rate and N3 slow-wave rate were quantified from overnight EEG recordings. Findings Of 70 eligible patients, 25 were included (eight [32%] females; mean age 35.2 years [SD 12.1]). Higher ipsilateral hippocampal 18F-MK6240 uptake was observed in participants with greater focal seizure burden (median [IQR] 0.70 [0.67-0.78] vs 0.64 [0.58-0.65], rank-biserial correlation=-0.58, 95% CI -0.82 to -0.19; p=0.02), was associated with lower N2 spindle rate (r=-0.42, 95% CI -0.70 to -0.03; p=0.04) and higher N3 slow-wave rate (r=0.47; 95% CI 0.09 to 0.73; p=0.02), and was also higher in participants with impaired than intact memory performance (n=21; mean [SD] 0.80 [0.12] vs 0.68 [0.10], Cohen's d=1.15, 95% CI 0.07 to 2.21; p=0.04). Associations outside the hippocampus were generally less consistent and less precise, with the largest non-hippocampal estimate observed in peri-hippocampal regions. Interpretation Higher hippocampal 18F-MK6240 uptake was associated with greater focal seizure burden, altered NREM sleep microstructure, and impaired memory performance in TLE. These findings suggest that hippocampal 18F-MK6240 uptake may represent a candidate marker of circuit vulnerability associated with NREM sleep-memory dysfunction in TLE, warranting validation in larger longitudinal studies.

neuroscience↗

A haploid wild yeast resource for exploring the natural ecology of Saccharomyces cerevisiae

Saccharomyces cerevisiae predominantly exists as diploid cells in nature, a life-cycle feature that limits classical genetic analyses of wild populations. Here, we establish a stable haploid strain collection derived from 33 diverse Taiwanese S. cerevisiae isolates through targeted disruption of the HO endonuclease gene. This resource spans predomesticated Asian wild lineages and enables systematic analyses of mating compatibility, reproductive isolation, and ecological trait variation. Although all pairwise hybridizations formed zygotes, many produced low spore viabilities, revealing strong postzygotic barriers. Genome analyses show that reduced hybrid fertility is primarily associated with chromosomal inversions and inter-chromosomal rearrangements rather than sequence divergence, indicating that structural variation maintains lineage separation despite geographic coexistence. Phenotypic profiling uncovered marked ecological differentiation, with the most diverged TW1 lineage favoring cooler growth conditions and a naturally occurring hybrid exhibiting heterosis with expanded thermal tolerance. While most wild strains grew poorly on maltose, two anthropogenically associated strains displayed enhanced maltose utilization linked to functional MAL regulatory alleles and maltose-specific transporters. Together, these findings demonstrate how structural genomic variation and metabolic gene divergence drive ecological and reproductive divergence in wild S. cerevisiae and establish this haploid collection as a platform for studying yeast evolution in nature.

genetics↗