TY - JOUR
T1 - Brain-to-blood elimination of 24S-hydroxycholesterol from rat brain is mediated by organic anion transporting polypeptide 2 (oatp2) at the blood-brain barrier
AU - Ohtsuki, Sumio
AU - Ito, Shingo
AU - Matsuda, Akihiro
AU - Hori, Satoko
AU - Abe, Takaaki
AU - Terasaki, Tetsuya
PY - 2007/11
Y1 - 2007/11
N2 - 24S-Hydroxycholesterol (24S-OH-chol), a major cerebral cholesterol metabolite, is an endogenous ligand for the liver X receptor and is a potential stimulant of cholesterol release from glial cells. The elimination mechanism of 24S-OH-chol from the brain is one of the key issues for understanding cerebral cholesterol homeostasis. The purpose of the present study was to clarify the molecular mechanism of the elimination process of 24S-OH-chol across the blood-brain barrier (BBB). After an intracerebral injection in rats, [ 3H]24S-OH-chol was eliminated from the brain and the radioactivity derived from [3H]24S-OH-chol was detected in the plasma, while [ 3H]cholesterol was not significantly eliminated from the brain. Co-administration of unlabeled 24S-OH-chol significantly inhibited the [ 3H]24S-OH-chol elimination, while no inhibitory effect was seen at the same concentration of cholesterol. The [3H]24S-OH-chol elimination was inhibited by co-administration of probenecid, but not by benzylpenicillin. Pre-administration of digoxin completely inhibited the elimination. Xenopus laevis oocytes expressing rat oatp2 exhibited significant transport of [3H]24S-OH-chol, and this was inhibited by unlabeled 24S-OH-chol and digoxin, indicating that rat oatp2 transports 24S-OH-chol. These results are the first direct demonstration that 24S-OH-chol undergoes elimination from the brain to blood across the BBB via a carrier-mediated process, which involves oatp2 expressed at the BBB in rats.
AB - 24S-Hydroxycholesterol (24S-OH-chol), a major cerebral cholesterol metabolite, is an endogenous ligand for the liver X receptor and is a potential stimulant of cholesterol release from glial cells. The elimination mechanism of 24S-OH-chol from the brain is one of the key issues for understanding cerebral cholesterol homeostasis. The purpose of the present study was to clarify the molecular mechanism of the elimination process of 24S-OH-chol across the blood-brain barrier (BBB). After an intracerebral injection in rats, [ 3H]24S-OH-chol was eliminated from the brain and the radioactivity derived from [3H]24S-OH-chol was detected in the plasma, while [ 3H]cholesterol was not significantly eliminated from the brain. Co-administration of unlabeled 24S-OH-chol significantly inhibited the [ 3H]24S-OH-chol elimination, while no inhibitory effect was seen at the same concentration of cholesterol. The [3H]24S-OH-chol elimination was inhibited by co-administration of probenecid, but not by benzylpenicillin. Pre-administration of digoxin completely inhibited the elimination. Xenopus laevis oocytes expressing rat oatp2 exhibited significant transport of [3H]24S-OH-chol, and this was inhibited by unlabeled 24S-OH-chol and digoxin, indicating that rat oatp2 transports 24S-OH-chol. These results are the first direct demonstration that 24S-OH-chol undergoes elimination from the brain to blood across the BBB via a carrier-mediated process, which involves oatp2 expressed at the BBB in rats.
KW - 24S-hydroxycholesterol
KW - Blood-brain barrier
KW - Brain efflux index method
KW - Efflux transport
KW - Organic anion transporting polypeptide 2
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U2 - 10.1111/j.1471-4159.2007.04901.x
DO - 10.1111/j.1471-4159.2007.04901.x
M3 - Article
C2 - 17868302
AN - SCOPUS:35548981361
SN - 0022-3042
VL - 103
SP - 1430
EP - 1438
JO - Journal of Neurochemistry
JF - Journal of Neurochemistry
IS - 4
ER -