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[(18)F]氟乙基哈尔醇与大鼠脑低温恒温器切片中单胺氧化酶A的特异性结合以及活体脑中结合的区室分析。

Specific binding of [(18)F]fluoroethyl-harmol to monoamine oxidase A in rat brain cryostat sections, and compartmental analysis of binding in living brain.

作者信息

Maschauer Simone, Haller Adelina, Riss Patrick J, Kuwert Torsten, Prante Olaf, Cumming Paul

机构信息

Laboratory of Molecular Imaging and Radiochemistry, Department of Nuclear Medicine, Friedrich Alexander University, Erlangen, Germany.

Department of Chemistry, Universitetet i Oslo & Norsk Medisinisk Syklotronsenter AS, Oslo, Norway.

出版信息

J Neurochem. 2015 Dec;135(5):908-17. doi: 10.1111/jnc.13370. Epub 2015 Oct 16.

Abstract

We investigated [(18)F]fluoroethyl-harmol ([(18)F]FEH) as a reversible and selective ligand for positron emission tomography (PET) studies of monoamine oxidase A (MAO-A). Binding of [(18)F]FEH in rat brain cryostat sections indicated high affinity (KD = 3 nM), and density (Bmax; 600 pmol/g). The plasma free fraction was 45%, and untransformed parent constituted only 13% of plasma radioactivity at 10 min after injection. Compartmental analysis of PET recordings in pargyline-treated rats showed high permeability to brain (K1; 0.32 mL/g/min) and slow washout (k2; 0.024/min), resulting in a uniformly high equilibrium distribution volume (VD; 20 mL/g). Using this VD to estimate unbound ligand in brain of untreated rats, the binding potential ranged from 4.2 in cerebellum to 7.2 in thalamus. We also calculated maps of rats receiving [(18)F]FEH at a range of specific activities, and then estimated saturation binding parameters in the living brain. In thalamus, striatum and frontal cortex KD was globally close to 300 nM and Bmax was close to 1600 pmol/g; the 100-fold discrepancy in affinity suggests a very low free fraction for [(18)F]FEH in the living brain. Based on a synthesis of findings, we calculate the endogenous dopamine concentration to be 0.4 μM in the striatal compartment containing MAO-A, thus unlikely to exert competition against [(18)F]FEH binding in vivo. In summary, [(18)F]FEH has good properties for the detection of MAO-A in the rat brain by PET, and may present logistic advantages for clinical research at centers lacking a medical cyclotron. We made a compartmental analysis of [(18)F]fluoroethylharmol ([(18)F]FEH) binding to monoamine oxidase A (MAO-A) in living rat brain and estimated the saturation binding parameters from the binding potential (BPND). The Bmax was of comparable magnitude to that in vitro, but with apparent affinity (300 nM), it was 100-fold lower in vivo. PET imaging with [(18) F]FEH is well suited for quantitation of MAO-A in living brain.

摘要

我们研究了[(18)F]氟乙基哈尔满([(18)F]FEH)作为一种可逆且选择性的配体,用于单胺氧化酶A(MAO - A)的正电子发射断层扫描(PET)研究。[(18)F]FEH在大鼠脑低温切片中的结合显示出高亲和力(KD = 3 nM)和密度(Bmax; 600 pmol/g)。血浆游离分数为45%,注射后10分钟时未转化的母体仅占血浆放射性的13%。对帕吉林处理的大鼠进行PET记录的房室分析显示,其对脑的通透性高(K1; 0.32 mL/g/min)且洗脱缓慢(k2; 0.024/min),导致平衡分布容积均匀较高(VD; 20 mL/g)。利用该VD估计未处理大鼠脑中的未结合配体,结合潜能范围从小脑的4.2到丘脑的7.2。我们还计算了在一系列比活度下接受[(18)F]FEH的大鼠的图谱,然后估计活体脑中的饱和结合参数。在丘脑、纹状体和额叶皮质中,KD总体上接近300 nM,Bmax接近1600 pmol/g;亲和力相差100倍表明[(18)F]FEH在活体脑中的游离分数非常低。基于研究结果的综合分析,我们计算出含有MAO - A的纹状体区室内内源性多巴胺浓度为0.4 μM,因此不太可能在体内对[(18)F]FEH的结合产生竞争。总之,[(18)F]FEH具有通过PET检测大鼠脑中MAO - A的良好特性,并且对于缺乏医用回旋加速器的中心的临床研究可能具有后勤学优势。我们对[(18)F]氟乙基哈尔满([(18)F]FEH)与活体大鼠脑中的单胺氧化酶A(MAO - A)的结合进行了房室分析,并从结合潜能(BPND)估计了饱和结合参数。Bmax与体外相当,但表观亲和力为300 nM,在体内低100倍。用[(18)F]FEH进行PET成像非常适合定量活体脑中的MAO - A。

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