TY - UNPB
T1 - Genomic analyses reveal new insights into Alzheimer's disease
AU - Uffelmann, Emil
AU - Wightman, Douglas P
AU - Bahrami, Shahram
AU - Shadrin, Alexey A
AU - Fominykh, Vera
AU - Ojima, Takafumi
AU - Jiang, Chenyang
AU - Benner, Christian
AU - Moreno, Elisa
AU - Campos, Adrian I
AU - Thomassen, Jesper Q
AU - Minois-Genin, Emmanuel
AU - Wu, Hei Man
AU - Walters, G Bragi
AU - Sherva, Richard
AU - Lin, Tian
AU - Bryois, Julien
AU - Krebs, Kristi
AU - Schipper, Marijn
AU - Narita, Akira
AU - Serretti, Alessandro
AU - Simonsen, Anja H
AU - van Seumeren, Anna L
AU - Corbett, Anne
AU - Knapskog, Anne-Brita
AU - Hartmann, Annette M
AU - den Braber, Anouk
AU - van Harten, Argonde C
AU - Harder, Arvid
AU - Rongve, Arvid
AU - Madsen, Bengt O
AU - Tijms, Betty M
AU - Aagaard, Bitten
AU - Lichtwarck, Bjørn
AU - Kirsebom, Bjørn E
AU - Creese, Byron
AU - Reynolds, Chandra A
AU - Hägg, Sara
AU - Karlsson, Ida
AU - Erikstrup, Christian
AU - Mikkelsen, Christina
AU - Ballard, Clive
AU - Aarsland, Dag
AU - Shigemizu, Daichi
AU - Rujescu, Dan
AU - Gudbjartsson, Daniel
AU - Aakhus, Eivind
AU - Sørensen, Erik
AU - Biessels, Geert Jan
AU - Visser, Pieter J
PY - 2025/10/13
Y1 - 2025/10/13
N2 - Alzheimer's disease (AD) is the most common cause of dementia, with global case numbers projected to reach 153 million in 2050
1 . AD is highly heritable, with twin-based heritability estimates of 60-80%
2 . While 1,200 causal loci are predicted to exist for AD
3 , approximately 80 have been associated with AD in two recent studies
4,5 , suggesting that many loci remain to be discovered
6 . Here, we analyzed data from 183,620 AD cases and 2.6 million controls from diverse ancestries, identifying 118 loci in a multi-ancestry analysis and 9 additional loci in ancestry-specific analyses, 48 of which are new. We identified new AD risk genes, prioritized potential drug targets, and identified microglia and, for the first time, several neuronal cell types enriched for AD-associated genetic risk. Moreover, we improved polygenic prediction and estimated a single-nucleotide polymorphism (SNP) heritability of 19%. Together, our findings offer insights into the genetic architecture and potential pathobiology of AD, as well as specific targets for future drug development research.
AB - Alzheimer's disease (AD) is the most common cause of dementia, with global case numbers projected to reach 153 million in 2050
1 . AD is highly heritable, with twin-based heritability estimates of 60-80%
2 . While 1,200 causal loci are predicted to exist for AD
3 , approximately 80 have been associated with AD in two recent studies
4,5 , suggesting that many loci remain to be discovered
6 . Here, we analyzed data from 183,620 AD cases and 2.6 million controls from diverse ancestries, identifying 118 loci in a multi-ancestry analysis and 9 additional loci in ancestry-specific analyses, 48 of which are new. We identified new AD risk genes, prioritized potential drug targets, and identified microglia and, for the first time, several neuronal cell types enriched for AD-associated genetic risk. Moreover, we improved polygenic prediction and estimated a single-nucleotide polymorphism (SNP) heritability of 19%. Together, our findings offer insights into the genetic architecture and potential pathobiology of AD, as well as specific targets for future drug development research.
U2 - 10.1101/2025.10.10.25337470
DO - 10.1101/2025.10.10.25337470
M3 - Preprint
C2 - 41282776
BT - Genomic analyses reveal new insights into Alzheimer's disease
PB - medRxiv
ER -