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Sökning: WFRF:(Skoog Johan 1985) > (2021)

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1.
  • Arvidsson Rådestig, Maya, et al. (författare)
  • Cognitive Performance and Cerebrospinal Fluid Markers in Preclinical Alzheimer's Disease: Results from the Gothenburg H70 Birth Cohort Studies.
  • 2021
  • Ingår i: Journal of Alzheimer's disease : JAD. - 1875-8908. ; 79:1, s. 225-235
  • Tidskriftsartikel (refereegranskat)abstract
    • We have previously shown that older adults with preclinical Alzheimer's disease (AD) pathology in cerebrospinal fluid (CSF) had slightly worse performance in Mini-Mental State Examination (MMSE) than participants without preclinical AD pathology.We therefore aimed to compare performance on neurocognitive tests in a population-based sample of 70-year-olds with and without CSF AD pathology.The sample was derived from the population-based Gothenburg H70 Birth Cohort Studies in Sweden. Participants (n=316, 70 years old) underwent comprehensive cognitive examinations, and CSF Aβ-42, Aβ-40, T-tau, and P-tau concentrations were measured. Participants were classified according to the ATN system, and according to their Clinical Dementia Rating (CDR) score. Cognitive performance was examined in the CSF amyloid, tau, and neurodegeneration (ATN) categories.Among participants with CDR 0 (n=259), those with amyloid (A+) and/or tau pathology (T+, N+) showed similar performance on most cognitive tests compared to participants with A-T-N-. Participants with A-T-N+ performed worse in memory (Supra span (p=0.003), object Delayed (p=0.042) and Immediate recall (p=0.033)). Among participants with CDR 0.5 (n=57), those with amyloid pathology (A+) scored worse in category fluency (p=0.003).Cognitively normal participants with amyloid and/or tau pathology performed similarly to those without any biomarker evidence of preclinical AD in most cognitive domains, with the exception of slightly poorer memory performance in A-T-N+. Our study suggests that preclinical AD biomarkers are altered before cognitive decline.
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2.
  • Lindberg, O., et al. (författare)
  • Effects of amyloid pathology and the APOE epsilon 4 allele on the association between cerebrospinal fluid A beta 38 and A beta 40 and brain morphology in cognitively normal 70-years-olds
  • 2021
  • Ingår i: Neurobiology of Aging. - : Elsevier BV. - 0197-4580. ; 101, s. 1-12
  • Tidskriftsartikel (refereegranskat)abstract
    • The association between cerebrospinal fluid (CSF) amyloid beta (A beta) A beta 38 or A beta 40 and brain grey- and white matter integrity is poorly understood. We studied this in 213 cognitively normal 70-year-olds, and in subgroups defined by presence/absence of the APOE epsilon 4 allele and A beta pathology: A beta-/APOE-, A beta+/APOE-, A beta-/APOE+ and A beta+/APOE+. CSF A beta was quantified using ELISA and genotyping for APOE was performed. Low CSF A beta 42 defined A beta plaque pathology. Brain volumes were assessed using Freesurfer-5.3, and white matter integrity using tract-based statistics in FSL. A beta 38 and A beta 40 were positively correlated with cortical thickness, some subcortical volumes and white matter integrity in the total sample, and in 3 of the subgroups: A beta-/APOE-, A beta+/APOE- and A beta-/APOE+. In A beta+/APOE+ subjects, higher A beta 38 and A beta 40 were linked to reduced cortical thickness and subcortical volumes. We hypothesize that production of all A beta species decrease in brain regions with atrophy. In A beta+/APOE+, A beta-dysregulation may be linked to cortical atrophy in which high A beta levels is causing pathological changes in the gray matter of the brain. (C) 2020 The Author(s). Published by Elsevier Inc.
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3.
  • Marseglia, Anna, et al. (författare)
  • Metabolic Syndrome Is Associated With Poor Cognition : A Population-Based Study of 70-Year-Old Adults Without Dementia
  • 2021
  • Ingår i: The journals of gerontology. Series A, Biological sciences and medical sciences. - : Oxford University Press (OUP). - 1079-5006 .- 1758-535X. ; 76:12, s. 2275-2283
  • Tidskriftsartikel (refereegranskat)abstract
    • Background: Individual conditions of metabolic syndrome (MetS) have been related to dementia; however, their combined impact on the preclinical stage is unknown. We investigated the associations between MetS and domain-specific cognitive function as well as the role of sociodemographic, cardiovascular, and genetic factors.Methods: Within the Gothenburg H70 Birth Cohort Study-Birth cohort 1944, 1131 dementia-free participants (aged 70 years) were examined during 2014-2016. MetS (central obesity plus at least 2 factors [reduced HD11.-cholesterol, elevated triglycerides, blood pressure, or blood glucose]) was identified according to the International Diabetes Federation criteria. Five cognitive domains (memory, attention/perceptual speed, executive function, verbal fluency, visuospatial abilities) were generated after z-standardizing raw scores from 10 neuropsychological tests. Education, heart disease, claudication (indicating peripheral atherosclerosis), and apolipoprotein genotype were ascertained by trained staff. Data were analyzed with linear regression models.Results: Overall, 618 participants (55%) had MetS. In multiadjusted linear regressions, MetS was related to poorer performance in attention/ perceptual speed (beta -0.14 [95% CI -0.25, -0.02]), executive function (beta -0.12 [95% CI -0.23, -0.01]), and verbal fluency (beta -0.19 [95% CI -0.30, -0.08]). These associations were present only among individuals who did not carry any APOE-epsilon 4 allele or were highly educated. However, among those with MetS, high education was related to better cognitive performance. MetS together with comorbid heart disease or claudication was associated with even worse cognitive performance than each alone.Conclusions: MetS is associated with poor attention/perceptual speed, executive function, and verbal fluency performance. Education, apolipoprotein E-epsilon 4 allele, and comorbid cardiovascular disease influenced the observed associations.
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