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ower in the brains of Alzheimer's Disease (AD) patients and it is thought to be involved with insulin signaling, lipid handling, and ap metabolism. Liu et al showed that LRP1 functions in the uptake and metabolism of Ap in astrocytes (a type of glial cell in the brain that helps support and maintain neuro
aturated fatty acids emerged as being significantly different in these three areas of the brain: Linoleic, Oleic, Docosahexanoic (DHA), Arachidonic, Linolenic, and Eicosapentaenoic (EPA). While the data were gathered from a small study population, it is notable that the metabolite profiles not only separa
ower in the brains of Alzheimer's Disease (AD) patients and it is thought to be involved with insulin signaling, lipid handling, and Ap metabolism. Liu et al showed that LRP1 functions in the uptake and metabolism of Ap in astrocytes (a type of glial cell in the brain that helps support and maintain neuro
aturated fatty acids emerged as being significantly different in these three areas of the brain: Linoleic, Oleic, Docosahexanoic (DHA), Arachidonic, Linolenic, and Eicosapentaenoic (EPA). While the data were gathered from a small study population, it is notable that the metabolite profiles not only separa
ower in the brains of Alzheimer's Disease (AD) patients and it is thought to be involved with insulin signaling, lipid handling, and Ap metabolism. Liu et al showed that LRP1 functions in the uptake and metabolism of Ap in astrocytes (a type of glial cell in the brain that helps support and maintain neuro
aturated fatty acids emerged as being significantly different in these three areas of the brain: Linoleic, Oleic, Docosahexanoic (DHA), Arachidonic, Linolenic, and Eicosapentaenoic (EPA). While the data were gathered from a small study population, it is notable that the metabolite profiles not only separa
ower in the brains of Alzheimer's Disease (AD) patients and it is thought to be involved with insulin signaling, lipid handling, and Ap metabolism. Liu et al showed that LRP1 functions in the uptake and metabolism of Afi in astrocytes (a type of glial cell in the brain that helps support and maintain neur
turated fatty acids emerged as being significantly different in these three areas of the brain: Linoleic, Oleic, Docosahexanoic (DHA), Arachidonic, Linolenic, and Eicosapentaenoic (EPA). While the data were gathered from a small study population, it is notable that the metabolite profiles not only separat
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Ebneth A
ORGANIZATIONKukull WA
LOCATIONWang J
PERSONDavid Holtzman
PERSONKitamura
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PERSONFiers M
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