Late-onset Alzheimer disease (AD) is a progressive disorder characterized by cognitive decline and memory impairment, affecting an estimated 6.9 million people in the U.S. The clinical course of AD unfolds over many years, often beginning with subtle cognitive changes before progressing to overt dementia. Although the rate of decline varies across individuals, growing evidence suggests that genetic factors play a central role in shaping both the onset and trajectory of cognitive deterioration.
While the APOE ε4 allele remains the strongest known genetic risk factor, genome-wide association studies (GWAS) have identified numerous additional common and rare variants contributing to susceptibility primarily in individuals of European ancestry (EA) and to a lesser extent in other populations. Polygenic risk score (PRS) is a numerical estimate of an individual’s genetic susceptibility to a specific disease. However, previously derived PRS for AD perform inconsistently across diverse ancestries.
In a new study, researchers describe the development and validation of a multi-ancestry PRS for AD that performs much better than previously constructed ones, especially for genetically diverse groups. This expanded representation of population groups is crucial for developing more robust and universally applicable PRS models, which can improve risk prediction among an ancestrally diverse group of patients.
A critical challenge in the application of PRS lies in the underrepresentation of diverse genetic ancestries in AD GWAS datasets, which include predominantly white individuals of European ancestry. The availability of GWAS data from diverse populations, including African American, Hispanic and East Asian, provides an opportunity to enhance the transferability and accuracy of PRS across multiple ancestries.”
Lindsay A. Farrer, PhD, co-corresponding author, chief of biomedical genetics, Boston University Chobanian & Avedisian School of Medicine
The researchers used summarized information from genetic markers across the genome derived from a multi-ancestry group including more than 63,000 AD cases and 484,000 age-matched controls. The PRS was tested in an independent ancestrally diverse sample of 10,612 AD cases and 16,625 elderly controls and subsequently validated in another group of mixed ancestry including 1,500 AD cases and 75,500 elderly controls. Compared to previous AD PRSs constructed using only individuals of European ancestry, the multi-ancestry AD PRS was more predictive of a clinical diagnosis of AD in all populations examined, particularly African American, Hispanic (including those from the Caribbean and continental U.S.) and East Asian.
Next, the investigators evaluated the association of the AD PRS with a variety of AD-related clinical, brain imaging, biomarker, and neuropathological traits measured in participants of the Alzheimer’s Disease Sequencing Project, Framingham Heart Study, Alzheimer’s Disease Neuroimaging Initiative, and Korean Brain Aging Study for the Early Diagnosis and Prediction of AD. The PRS was significantly associated with poorer memory, executive function and language performance; reduced volume of the hippocampus – the region of the brain most impacted in the early stages of AD — assessed by brain MRI, abnormal levels of the hallmark AD proteins amyloid-β and phosphorylated Tau (pTau) — with a greater pTau deviation among women — measured in cerebrospinal fluid. In addition, longitudinal analyses revealed that individuals with a very high PRS exhibited the steepest cognitive decline, particularly during the period prior to onset of AD.
Dr. Xiaoling Zhang, co-corresponding author and associate professor of medicine at the school, noted, “the associations we observed with early biological and cognitive changes and potential sex-specific differences support the value of this ancestry-aware PRS for long-range risk prediction, selecting subjects for clinical trials, and personalized intervention and prevention strategies.”
These findings appear online in the journal Nature Genetics.
Source:
Boston University School of Medicine
Journal reference:
Kurniansyah, N., et al. (2026). A multiancestry polygenic risk score for Alzheimer’s disease is associated with cognitive decline and neuropathological hallmarks in diverse populations. Nature Genetics.DOI: 10.1038/s41588-026-02722-8. https://www.nature.com/articles/s41588-026-02722-8