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d result in LRP1 as a potential drug target. EFTA00449178 Yes, it is in a mouse model...so may not be 100% predictable or translatable in humans. David Holtzman (St Louis), who you met last year is a co-author on this study. Liu CC, Hu J, Zhao N, Wang J, Na W, Cirrito JR, Kanekiyo T, Holtzman DM, Bu G. 2017
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
erved here could result in LRP1 as a potential drug target. Yes, it is in a mouse model...so may not be 100% predictable or translatable in humans. David Holtzman (St Louis), who you met last year is a co-author on this study. Liu CC, Hu J, Zhao N, Wang J, Na W, Cirrito JR, Kanekiyo T, Holtzman DM, Bu G. 2017
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
erved here could result in LRP1 as a potential drug target. Yes, it is in a mouse model...so may not be 100% predictable or translatable in humans. David Holtzman (St Louis), who you met last year is a co-author on this study. Liu CC Hu J, Zhao N, Wang J, Na W, Cirrito JR, Kanekiyo T, Holtzman DM, Bu G. 2017.
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
erved here could result in LRP1 as a potential drug target. Yes, it is in a mouse model...so may not be 100% predictable or translatable in humans. David Holtzman (St Louis), who you met last year is a co-author on this study. Liu CC, Hu .1, Zhao N, Wang J, Na W Cirrito JR, Konekiyo T, Holtzman DM, Bu G. 2017
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
Entities connected to both David Holtzman and Linolenic
Ebneth A
ORGANIZATIONKukull WA
LOCATIONWang J
PERSONLiu et al
PERSONKitamura
ORGANIZATION
Edward Snowden
PERSONFiers M
ORGANIZATIONSnellinx
ORGANIZATIONHess CP
ORGANIZATIONCorthout N
ORGANIZATIONOmodho L
ORGANIZATIONRadaelli E
ORGANIZATIONTesseur
ORGANIZATIONZhao N
PERSONMayeux
ORGANIZATIONHoltzman DM
PERSON
J Neurosci
PERSONEspuny-Camacho
PERSONArranz
PERSONAndo K
PERSON