Diego. ADNI data are disseminated by the Laboratory for Neuro Imaging at the University of Southern California. We thank Drs. D. Stephen Snyder and Marilyn Miller from NIA who are ex-officio ADGC members. EADI. This work has been developed and supported by the LABEX (laboratory of excellence program investment for the future) DISTALZ grant (Development of Innovative Strategies for a Transdisciplinary approach to ALZheimer's disease) including funding from MEL (Metropole européenne de Lille), ERDF (European Regional Development Fund) and Conseil Régional Rotterdam, Netherlands Organization for the Health Research and Development (ZonMw), the Research Institute for Diseases in the Elderly (RIDE), the Ministry of Education, Culture and Science, the Ministry for Health, Welfare and Sports, the European Commission (DG XII), and the Municipality of Rotterdam. The authors are grateful to the study participants, the staff from the Rotterdam Study and the participating general practitioners and pharmacists. The generation and management of GWAS genotype data for the Rotterdam Study (RS-I, RS-II, RS-III) was executed by the Human Genotyping Facility of the Genetic Laboratory of the
Characterization of the genetic landscape of Alzheimer’s disease (AD) and related dementias (ADD) provides a unique opportunity for a better understanding of the associated pathophysiological processes. We performed a two-stage genome-wide association study totaling 111,326 clinically diagnosed/‘proxy’ AD cases and 677,663 controls. We found 75 risk loci, of which 42 were new at the time of analysis. Pathway enrichment analyses confirmed the involvement of amyloid/tau pathways and highlighted microglia implication. Gene prioritization in the new loci identified 31 genes that were suggestive of new genetically associated processes, including the tumor necrosis factor alpha pathway through the linear ubiquitin chain assembly complex. We also built a new genetic risk score associated with the risk of future AD/dementia or progression from mild cognitive impairment to AD/dementia. The improvement in prediction led to a 1.6- to 1.9-fold increase in AD risk from the lowest to the highest decile, in addition to effects of age and the APOE ε4 allele.
We compared the efficacy of intravenous gamma globulin plus aspirin with that of aspirin alone in reducing the frequency of coronary-artery abnormalities in children with acute Kawasaki syndrome in a multicenter, randomized trial. Children randomly assigned to the gamma globulin group received intravenous gamma globulin, 400 mg per kilogram of body weight per day, for four consecutive days; both treatment groups received aspirin, 100 mg per kilogram per day, through the 14th day of illness, then 3 to 5 mg per kilogram per day. Two-dimensional echocardiograms were interpreted blindly and independently by two or more readers. Two weeks after enrollment, coronary-artery abnormalities were present in 18 of 78 children (23 percent) in the aspirin group, as compared with 6 of 75 (8 percent) in the gamma globulin group (P = 0.01). Seven weeks after enrollment, abnormalities were present in 14 of 79 children (18 percent) in the aspirin group and in 3 of 79 (4 percent) in the gamma globulin group (P = 0.005). No child had serious adverse effects from receiving gamma globulin. We conclude that high-dose intravenous gamma globulin is safe and effective in reducing the prevalence of coronary-artery abnormalities when administered early in the course of Kawasaki syndrome.
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