Mechanisms
No CETP mass is detected in human cerebrospinal fluid, unlike LCAT and phospholipid transfer protein (J Lipid Res 2000)
Original title: Characterization and functional studies of lipoproteins, lipid transfer proteins, and lecithin:cholesterol acyltransferase in CSF of normal individuals and patients with Alzheimer's disease
Researchers characterized lipoproteins, lipid transfer proteins and lecithin cholesterol acyltransferase (LCAT) in the cerebrospinal fluid of Alzheimer's disease patients, patients with other dementias, and non-demented controls. Enzymatically active LCAT was present in human CSF, as was phospholipid transfer protein activity and mass, but no CETP mass was detected in CSF from any group, distinguishing CETP from the other two lipid-handling proteins in the cerebral compartment. LCAT activity was 50% lower in AD patients than controls, and CSF lipoproteins induced significant cholesterol efflux from cultured rat astrocytes, suggesting a role for CSF lipoproteins, though not CETP itself, in maintaining brain cholesterol homeostasis.
Original abstract
We investigated the lipoprotein distribution and composition in cerebrospinal fluid (CSF) in a group of patients with Alzheimer's disease (AD) or affected by other types of dementia in comparison to non-demented controls. We found slightly decreased apolipoprotein (apo)E and cholesterol concentrations in CSF of AD patients and moderately increased apoA-I concentrations, while in patients suffering from other types of dementia the apoA-I CSF concentration was increased. ApoA-IV concentrations varied widely in human CSF, but were not associated with any clinical condition. HDL(2)-like apoE-containing lipoproteins represent the major lipoprotein fraction. In CSF of normal controls, only a minor HDL(3)-like apoA-I-containing lipoprotein fraction was observed; this fraction was more prevalent in AD patients. ApoA-II was recovered mostly in the HDL(3) density range, while apoA-IV was not associated with lipoproteins but appeared in a lipid-free form, co-localizing with LCAT immunoreactivity. Bi-dimensional analysis demonstrated pre-beta and alpha apoA-I-containing particles; apoE and apoA-II were detected only in alpha-migrating particles. ApoA-IV distributed both to pre-beta and gamma-migrating particles; the LCAT signal was co-localized in this gamma-migrating fraction. Enzymatically active LCAT was present in human CSF as well as PLTP activity and mass; no CETP mass was detected. In CSF from AD patients, LCAT activity was 50% lower than in CSF from normal controls. CSF lipoproteins induced a significant cholesterol efflux from cultured rat astrocytes, suggesting that they play an active role in maintaining the cholesterol homeostasis in brain cells.
Summary written by cetpinhibition.org from the published abstract; figures as published. Page updated 19 August 2026. Methods.