Lipidome alterations in human prefrontal cortex during development, aging, and cognitive disorders

被引:0
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作者
Qianhui Yu
Zhisong He
Dmitry Zubkov
Shuyun Huang
Ilia Kurochkin
Xiaode Yang
Tobias Halene
Lothar Willmitzer
Patrick Giavalisco
Schahram Akbarian
Philipp Khaitovich
机构
[1] Chinese Academy of Sciences,Shanghai Institutes for Biological Sciences
[2] CAS-MPG Partner Institute for Computational Biology,CAS Key Laboratory of Compstudy has been deposited in the National Omics Datautational Biology
[3] SIBS,Department of Psychiatry and Friedman Brain Institute
[4] CAS,Comparative Biology Group
[5] Skolkovo Institute of Science and Technology,undefined
[6] ShanghaiTech University,undefined
[7] Icahn School of Medicine at Mount Sinai,undefined
[8] Max Planck Institute for Molecular Plant Physiology,undefined
[9] Max Planck Institute for Evolutionary Anthropology,undefined
[10] CAS-MPG Partner Institute for Computational Biology,undefined
[11] SIBS,undefined
[12] CAS,undefined
来源
Molecular Psychiatry | 2020年 / 25卷
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摘要
Lipids are essential to brain functions, yet they remain largely unexplored. Here we investigated the lipidome composition of prefrontal cortex gray matter in 396 cognitively healthy individuals with ages spanning 100 years, as well as 67 adult individuals diagnosed with autism (ASD), schizophrenia (SZ), and Down syndrome (DS). Of the 5024 detected lipids, 95% showed significant age-dependent concentration differences clustering into four temporal stages, and resulting in a gradual increase in membrane fluidity in individuals ranging from newborn to nonagenarian. Aging affects 14% of the brain lipidome with late-life changes starting predominantly at 50–55 years of age—a period of general metabolic transition. All three diseases alter the brain lipidome composition, leading—among other things—to a concentration decrease in glycerophospholipid metabolism and endocannabinoid signaling pathways. Lipid concentration decreases in SZ were further linked to genetic variants associated with disease, indicating the relevance of the lipidome changes to disease progression.
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页码:2952 / 2969
页数:17
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