Publications by authors named "J R Gaitan"

Background: Klotho, encoded by the gene, is an anti-aging and neuroprotective protein. KL-VS heterozygosity (KL-VS) is hypothesized to be protective against the accumulation of Alzheimer's disease (AD) neuropathological hallmarks (amyloid-β (Aβ) and tau).

Objective: We examine whether being positive for Aβ (A+) or tau (T+), or A/T joint status [positive for Aβ (A + T-), tau (A-T+), both (A + T+) or neither (A-T-)] vary by KL-VS and whether serum klotho protein levels vary based on A+, T+, or A/T status in a cohort enriched for AD risk.

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Article Synopsis
  • - The study aimed to analyze how myelin oligodendrocyte glycoprotein-associated antibody disease (MOGAD) affects employment among adults internationally by measuring job loss, hours worked, and wages.
  • - Researchers gathered data from 117 adults diagnosed with MOGAD across 13 countries, finding a decline in employment from 63.2% before diagnosis to 48.7% after, and a drop in average work hours from 31.6 to 19.5 hours per week.
  • - Results showed that living in a high-income country was linked to better employment outcomes post-MOGAD, while factors like depressed mood and pain were associated with increased unemployment and reduced work hours.
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Earth harbours an extraordinary plant phenotypic diversity that is at risk from ongoing global changes. However, it remains unknown how increasing aridity and livestock grazing pressure-two major drivers of global change-shape the trait covariation that underlies plant phenotypic diversity. Here we assessed how covariation among 20 chemical and morphological traits responds to aridity and grazing pressure within global drylands.

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Background: Pancreatic islets are important in nutrient homeostasis and improved cellular models of clonal origin may very useful especially in view of relatively scarce primary material. Close 3D contact and coupling between β-cells are a hallmark of physiological function improving signal/noise ratios. Extracellular electrophysiology using micro-electrode arrays (MEA) is technically far more accessible than single cell patch clamp, enables dynamic monitoring of electrical activity in 3D organoids and recorded multicellular slow potentials (SP) provide unbiased insight in cell-cell coupling.

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