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Imaging incorporation of circulating docosahexaenoic acid into the human brain using positron emission tomography

机译:使用正电子发射断层扫描成像技术将循环二十二碳六烯酸掺入人脑

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摘要

Docosahexaenoic acid (DHA; 22:6n-3) is a critical constituent of the brain, but its metabolism has not been measured in the human brain in vivo. In monkeys, using positron emission tomography (PET), we first showed that intravenously injected [1-11C]DHA mostly entered nonbrain organs, with ∼0.5% entering the brain. Then, using PET and intravenous [1-11C]DHA in 14 healthy adult humans, we quantitatively imaged regional rates of incorporation (K*) of DHA. We also imaged regional cerebral blood flow (rCBF) using PET and intravenous [15O]water. Values of K* for DHA were higher in gray than white matter regions and correlated significantly with values of rCBF in 12 of 14 subjects despite evidence that rCBF does not directly influence K*. For the entire human brain, the net DHA incorporation rate Jin, the product of K*, and the unesterified plasma DHA concentration equaled 3.8 ± 1.7 mg/day. This net rate is equivalent to the net rate of DHA consumption by brain and, considering the reported amount of DHA in brain, indicates that the half-life of DHA in the human brain approximates 2.5 years. Thus, PET with [1-11C]DHA can be used to quantify regional and global human brain DHA metabolism in relation to health and disease.
机译:二十二碳六烯酸(DHA; 22:6n-3)是大脑的重要组成部分,但尚未在人脑中对其代谢进行测量。在猴子中,我们使用正电子发射断层扫描(PET)首先显示,静脉注射[1- 11 C] DHA主要进入非脑器官,约有0.5%进入大脑。然后,使用PET和静脉注射[1- 11 C] DHA在14位健康的成年人中,我们定量成像了DHA的区域掺入率(K *)。我们还使用PET和静脉内[ 15 O]水成像了局部脑血流(rCBF)。尽管有证据表明rCBF不会直接影响K *,但DHA的K *值在灰色区域高于白质区域,并且与14名受试者中的12名的rCBF值显着相关。对于整个人脑,净DHA掺入率Jin(K *的乘积)和未酯化血浆DHA浓度等于3.8±1.7 mg / day。该净速率等于大脑消耗DHA的净速率,并且考虑到大脑中DHA的报道量,表明该DHA在人脑中的半衰期约为2.5年。因此,具有[1- 11 C] DHA的PET可以用于量化与健康和疾病相关的区域和全局人脑DHA代谢。

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