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Träfflista för sökning "hsv:(MEDICIN OCH HÄLSOVETENSKAP) hsv:(Klinisk medicin) hsv:(Neurologi) ;pers:(Blennow K)"

Sökning: hsv:(MEDICIN OCH HÄLSOVETENSKAP) hsv:(Klinisk medicin) hsv:(Neurologi) > Blennow K

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  • Li, X., et al. (författare)
  • White matter changes in familial Alzheimer's disease
  • 2015
  • Ingår i: Journal of Internal Medicine. - : Wiley. - 0954-6820 .- 1365-2796. ; 278:2, s. 211-218
  • Tidskriftsartikel (refereegranskat)abstract
    • BackgroundFamilial Alzheimer's disease (FAD) resulting from gene mutations in PSEN1, PSEN2 and APP is associated with changes in the brain. ObjectiveThe aim of this study was to investigate changes in grey matter (GM), white matter (WM) and the cerebrospinal fluid (CSF) in FAD. SubjectsTen mutation carriers (MCs) with three different mutations in PSEN1 and APP and 20 noncarriers (NCs) were included in the study. Three MCs were symptomatic and seven were presymptomatic (pre-MCs). MethodsWhole-brain GM volume as well as fractional anisotropy (FA) and mean diffusivity (MD) using voxel-based morphometry and tract-based spatial statistics analyses, respectively, were compared between MCs and NCs. FA and MD maps were obtained from diffusion tensor imaging. ResultsA significant increase in MD was found in the left inferior longitudinal fasciculus, cingulum and bilateral superior longitudinal fasciculus in pre-MCs compared with NCs. After inclusion of the three symptomatic MCs in the analysis, the regions became wider. The mean MD of these regions showed significant negative correlation with the CSF level of A42, and positive correlations with P-tau(181p) and T-tau. No differences were observed in GM volume and FA between the groups. ConclusionsThe results of this study suggest that FAD gene mutations affect WM diffusivity before changes in GM volume can be detected. The WM changes observed were related to changes in the CSF, with similar patterns previously observed in sporadic Alzheimer's disease.
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  • Andreasen, N, et al. (författare)
  • Evaluation of CSF-tau and CSF-Abeta42 as diagnostic markers for Alzheimer disease in clinical practice
  • 2001
  • Ingår i: Archives of Neurology. - 0003-9942. ; 58:3, s. 373-379
  • Tidskriftsartikel (refereegranskat)abstract
    • OBJECTIVE: To evaluate the diagnostic potential of cerebrospinal fluid (CSF) levels of tau and beta-amyloid protein ending at amino acid 42 (Abeta42) as biomarkers for Alzheimer disease (AD) in clinical practice. DESIGN: A 1-year prospective study. SETTING: Community population-based sample of all consecutive patients admitted for investigation of cognitive symptoms to the Pitea River Valley Hospital, Pitea, Sweden. PATIENTS: A total of 241 patients with probable AD (n = 105), possible AD (n = 58), vascular dementia (n = 23), mild cognitive impairment (n = 20), Lewy body dementia (n = 9), other neurological disorders (n = 3), and psychiatric disorders (n = 5) and nondemented individuals (n = 18). MAIN OUTCOME MEASURES: Cerebrospinal fluid tau and CSF-Abeta42 were assayed each week as routine clinical neurochemical analyses. Sensitivity and specificity were defined using the regression line from 100 control subjects from a multicenter study. Positive and negative predictive values were calculated for different prevalence rates of AD. RESULTS: We found increased CSF-tau and decreased CSF-Abeta42 levels in probable and possible AD. Sensitivity was 94% for probable AD, 88% for possible AD, and 75% for mild cognitive impairment, whereas specificity was 100% for psychiatric disorders and 89% for nondemented. Specificity was lower in Lewy body dementia (67%) mainly because of low CSF-Abeta42 levels and in vascular dementia (48%) mainly because of high CSF-tau levels. Sensitivity for CSF-tau and CSF-Abeta42 increased in patients with AD possessing the ApoE epsilon4 allele, approaching 100%. At a prevalence of AD of 45%, the positive predictive value was 90% and the negative predictive value was 95%. CONCLUSIONS: Cerebrospinal fluid tau and CSF-Abeta42 have so far been studied in research settings, under conditions providing data on the optimal performance. We examined a prospective patient sample, with assays run in clinical routine, giving figures closer to the true performance of CSF-tau and CSF-Abeta42. The predictive value for AD was greater than 90%. Therefore, these biomarkers may have a role in the clinical workup of patients with cognitive impairment, especially to differentiate early AD from normal aging and psychiatric disorders.
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  • Andreasen, N, et al. (författare)
  • Sensitivity, specificity, and stability of CSF-tau in AD in a community-based patient sample
  • 1999
  • Ingår i: Neurology. - 1526-632X. ; 53:7, s. 1488-1488
  • Tidskriftsartikel (refereegranskat)abstract
    • OBJECTIVE: To evaluate the sensitivity and specificity of CSF-tau in clinical practice as a diagnostic marker for AD compared with normal aging and depression, to study the stability of CSF-tau in longitudinal samples, and to determine whether CSF-tau levels are influenced by different covariates such as gender, age, duration or severity of disease, or possession of the APOE-epsilon4 allele. METHODS: Consecutive AD patients from a community-based sample were studied, including 407 patients with AD (274 with probable AD and 133 with possible AD), 28 patients with depression, and 65 healthy elderly control subjects. A follow-up lumbar puncture was performed in 192 AD patients after approximately 1 year. CSF-tau was determined using a sandwich ELISA, which was run as a routine clinical neurochemical analysis. RESULTS: CSF-tau was increased in probable (690+/-341 pg/mL; p < 0.0001) and possible (661+/-447 pg/mL; p < 0.0001) AD, but not in depression (231+/-110 pg/mL) compared with control subjects (227+/-101 pg/mL). Receiver operating characteristics analysis showed that a cutoff level of 302 pg/mL resulted in a sensitivity of 93% (95% CI, 90-96%) and a specificity of 86% (95% CI, 75-94%), with an area under the curve of 0.95 to discriminate AD from control subjects. Within the AD group, CSF-tau did not differ significantly between baseline and follow-up investigations, and was relatively stable between baseline and 1-year follow-up levels, with a coefficient of variation of 21.0%. High CSF-tau levels were also found in most AD patients with very short duration of dementia, and with Mini-Mental State Examination scores >23 (n = 205). In total, 193 of 205 patients (sensitivity, 94%) had a CSF-tau level higher than 302 pg/mL. CONCLUSIONS: CSF-tau has a high sensitivity and specificity to differentiate AD from normal aging and depression, as demonstrated in a large community-based series of consecutive AD patients during which analyses were run continually in a clinical neurochemical laboratory. The increase in CSF-tau is found very early in the disease process in AD, is stable over time, and has a low interindividual variation on repeated sampling. Although high CSF-tau is found in some neurologic conditions (e.g., stroke), these findings suggest that CSF-tau may be of use to help in differentiating AD from normal aging and depression, especially early in the course of the disease, when the symptoms are vague and the diagnosis is especially difficult.
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6.
  • Blennow, K., et al. (författare)
  • EVOLUTION OF A beta 42 AND A beta 40 LEVELS AND A beta 42/A beta 40 RATIO IN PLASMA DURING PROGRESSION OF ALZHEIMER'S DISEASE: A MULTICENTER ASSESSMENT
  • 2009
  • Ingår i: Journal Of Nutrition Health & Aging. - 1279-7707. ; 13:3, s. 205-208
  • Konferensbidrag (refereegranskat)abstract
    • Objective: To better understand the seemingly contradictory plasma beta-amyloid (A beta) results in Alzheimer's disease (AD) patients by using a newly developed plasma A beta assay, the INNO-BIA plasma A beta forms, in a multicenter study. Methods: A combined retrospective analysis of plasma A beta isoforms on mild cognitive impairment (MCI) from three large cross-sectional studies involving 643 samples from the participating German and Swedish centers. Results: Detection modules based on two different amino (N)-terminal specific A beta monoclonal antibodies demonstrated that A beta in plasma could be reliable quantified using a sandwich immunoassay technology with high precision, even for low A beta 42 plasma concentrations. A beta 40 and A beta 42 concentrations varied consistently with the ApoE genotype, while the A beta 42/A beta 40 ratio did not. Irrespective of the decrease of the A beta 42/A beta 40 ratio with age and MMSE, this parameter was strongly associated with AD, as defined in this study by elevated hyperphosphorylated (P-tau181P) levels in cerebrospinal fluid (CSF). Conclusion: A highly robust assay for repeatedly measuring A beta forms in plasma such as INNO-BIA plasma A beta forms might be a useful tool in a future risk assessment of AD.
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  • Brune, S., et al. (författare)
  • Serum neurofilament light chain concentration predicts disease worsening in multiple sclerosis
  • 2022
  • Ingår i: Multiple Sclerosis Journal. - : SAGE Publications. - 1352-4585 .- 1477-0970. ; 28:12
  • Tidskriftsartikel (refereegranskat)abstract
    • Background: Serum neurofilament light (sNfL) chain is a promising biomarker reflecting neuro-axonal injury in multiple sclerosis (MS). However, the ability of sNfL to predict outcomes in real-world MS cohorts requires further validation. Objective: The aim of the study is to investigate the associations of sNfL concentration, magnetic resonance imaging (MRI) and retinal optical coherence tomography (OCT) markers with disease worsening in a longitudinal European multicentre MS cohort. Methods: MS patients (n = 309) were prospectively enrolled at four centres and re-examined after 2 years (n = 226). NfL concentration was measured by single molecule array assay in serum. The patients' phenotypes were thoroughly characterized with clinical examination, retinal OCT and MRI brain scans. The primary outcome was disease worsening at median 2-year follow-up. Results: Patients with high sNfL concentrations (> 8 pg/mL) at baseline had increased risk of disease worsening at median 2-year follow-up (odds ratio (95% confidence interval) = 2.8 (1.5-5.3), p = 0.001). We found no significant associations of MRI or OCT measures at baseline with risk of disease worsening. Conclusion: Serum NfL concentration was the only factor associated with disease worsening, indicating that sNfL is a useful biomarker in MS that might be relevant in a clinical setting.
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  • Ferreira, P. C. L., et al. (författare)
  • Plasma p-tau231 and p-tau217 inform on tau tangles aggregation in cognitively impaired individuals
  • 2023
  • Ingår i: Alzheimers & Dementia. - 1552-5260. ; 19:10, s. 4463-4474
  • Tidskriftsartikel (refereegranskat)abstract
    • INTRODUCTIONPhosphorylated tau (p-tau) biomarkers have been recently proposed to represent brain amyloid-& beta; (A & beta;) pathology. Here, we evaluated the plasma biomarkers' contribution beyond the information provided by demographics (age and sex) to identify A & beta; and tau pathologies in individuals segregated as cognitively unimpaired (CU) and impaired (CI). METHODSWe assessed 138 CU and 87 CI with available plasma p-tau231, 217(+), and 181, A & beta;42/40, GFAP and A & beta;- and tau-PET. RESULTSIn CU, only plasma p-tau231 and p-tau217(+) significantly improved the performance of the demographics in detecting A & beta;-PET positivity, while no plasma biomarker provided additional information to identify tau-PET positivity. In CI, p-tau217(+) and GFAP significantly contributed to demographics to identify both A & beta;-PET and tau-PET positivity, while p-tau231 only provided additional information to identify tau-PET positivity. DISCUSSIONOur results support plasma p-tau231 and p-tau217(+) as state markers of early A & beta; deposition, but in later disease stages they inform on tau tangle accumulation. HighlightsIt is still unclear how much plasma biomarkers contribute to identification of AD pathology across the AD spectrum beyond the information already provided by demographics (age + sex).Plasma p-tau231 and p-tau217(+) contribute to demographic information to identify brain A & beta; pathology in preclinical AD.In CI individuals, plasma p-tau231 contributes to age and sex to inform on the accumulation of tau tangles, while p-tau217(+) and GFAP inform on both A & beta; deposition and tau pathology.
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