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Meijers-Heijboer, H.

Publications and source records attributed to Meijers-Heijboer, H..

2 recordsLinked to original sources

Centenarian Controls Increase Variant Effect-sizes by an average two-fold in an Extreme Case-Extreme Control Analysis of Alzheimer’s Disease

The detection of genetic loci associated with Alzheimers disease (AD) requires large numbers of cases and controls because variant effect-sizes are mostly small. We hypothesized that variant effect-sizes should increase when individuals who represent the extreme ends of a disease spectrum are considered, as their genomes are assumed to be maximally enriched or depleted with disease-associated genetic variants.\n\nWe used 1,073 extensively phenotyped AD cases with relatively young age at onset as extreme cases (66.3{+/-}7.9 years), 1,664 age-matched controls (66.0{+/-}6.5 years) and 255 cognitively healthy centenarians as extreme controls (101.4{+/-}1.3 years). We estimated the effect-size of 29 variants that were previously associated with AD in genome-wide association studies.\n\nComparing extreme AD-cases with centenarian-controls increased the variant effect-size relative to published effect-sizes by on average 1.90-fold (SE=0.29, p=9.0x10-4). The effect-size increase was largest for the rare high-impact TREM2 (R74H) variant (6.5-fold), and significant for variants in/near ECHDC3 (4.6-fold), SLC24A4-RIN3 (4.5-fold), NME8 (3.8-fold), PLCG2 (3.3-fold), APOE-{varepsilon}2 (2.2-fold) and APOE-{varepsilon}4 (2.0-fold). Comparing extreme phenotypes enabled us to replicate the AD association for 10 variants (p<0.05) in relatively small samples. The increase in effect-sizes depended mainly on using centenarians as extreme controls: the average variant effect-size was not increased in a comparison of extreme AD cases and age-matched controls (0.94-fold, p=6.8x10-1), suggesting that on average the tested genetic variants did not explain the extremity of the AD-cases. Concluding, using centenarians as extreme controls in AD case-controls studies boosts the variant effect-size by on average two-fold, allowing the replication of disease-association in relatively small samples.

genetics

The 100-plus Study of Dutch cognitively healthy centenarians: rationale, design and cohort description

RATIONALEAlthough the incidence of dementia increases exponentially with age, some individuals reach >100 years with fully retained cognitive abilities. To identify the characteristics associated with the escape or delay of cognitive decline, we initiated the 100-plus Study (www.100plus.nl).\n\nDESIGNThe 100-plus Study is an on-going prospective cohort study of Dutch centenarians who self-reported to be cognitively healthy, their first-degree family members and their respective partners. We collect demographics, life history, medical history, genealogy, neuropsychological data and blood samples. Centenarians are followed annually until death. PET-MRI scans and feces donation are optional. Almost 30% of the centenarians agreed to post-mortem brain donation.\n\nCOHORT DESCRIPTIONTo date (September 2018), 332 centenarians were included in the study. We analyzed demographic statistics of the first 300 centenarians (25% males) included in the cohort. Centenarians came from higher socio-economic classes and had higher levels of education compared to their birth cohort; alcohol consumption of centenarians was similar, and most males smoked during their lifetime. At baseline, the centenarians had a median MMSE score of 25 points (IQR: 22.0-27.5); the large majority lived independently, retained hearing and vision abilities and was independently mobile. Mortality was associated with cognitive functioning: centenarians with a baseline MMSE score [&ge;]26 and <26 points had a mortality percentage of respectively 17% and 42% per annual year in the second year after baseline (p=0.003). The cohort was 2.1-fold enriched with the neuroprotective APOE-{varepsilon}2 allele relative to 60-80 year-old population controls (p=4.8x10-7), APOE-{varepsilon}3 was unchanged and the APOE-{varepsilon}4 allele was 2.3-fold depleted (p=6.3x10-7).\n\nCONCLUSIONSComprehensive characterization of the 100-plus cohort of cognitively healthy centenarians might reveal protective factors that explain the physiology of long-term preserved cognitive health.

neuroscience