首页> 外文期刊>The Journal of Nuclear Medicine >Parametric PET imaging of 5HT2A receptor distribution with 18F-setoperone in the normal human neocortex.
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Parametric PET imaging of 5HT2A receptor distribution with 18F-setoperone in the normal human neocortex.

机译:在正常人新皮层中用18F-setoperone对5HT2A受体分布进行参数化PET成像。

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Because of 5HT2A receptor's (5HT2AR) putative role in several neuropsychiatric diseases, studying it in vivo is an important goal. 18F-setoperone is a well-validated and widely used PET radioligand for the study of neocortical 5HT2AR. We have previously developed and validated in baboons a method to generate parametric maps of the binding potential (i.e., the k3-to-k4 ratio) on a pixel-by-pixel basis, based on a single-dose tracer amount dynamic 18F-setoperone PET paradigm, and with the receptor-poor cerebellum as reference structure. However, previous semiquantitative PET human studies suggested that nonspecific (NS) binding in the neocortex might not be identical to that in the cerebellum. MEHODS: As a first step in the development of k3:k4 parametric mapping in humans, we therefore estimated directly the NS binding of 18F-setoperone in the neocortex of four young healthy volunteers who were studied with PET both before and after 2 wk of daily therapeutic oral doses of sertindole, an atypical neuroleptic possessing strong 5HT2AR antagonistic activity. RESULTS: Visual analysis of the dynamic PET data obtained over 120 min confirmed that virtually full receptor saturation had indeed been achieved; however, the late neocortical time-activity curves (TACs) progressively fell to lower uptake values than corresponding cerebellar TACs and could not be fitted according to a four-compartment (four-Cpt) nonlinear model, indicating lack of specific binding. The cerebellum TACs for both the control and the challenge conditions, as well as the challenge neocortical TACs, were fitted according to three-Cpt modeling, providing the k/k6 ratio and in turn the f2 fraction for both structures. Despite the small sample of only four subjects, the f2 fraction for the neocortex was significantly larger (i.e., NS binding was smaller) than that estimated for the cerebellum. This allowed us to determine the k3-to-k4 ratio for the control neocortex using the challenge neocortex as reference structure, that is, without using the cerebellum at all. This "assumption-free" approach was also successfully used to generate k3:k4 maps for these four subjects, which showed highest values for the temporal cortex. CONCLUSION: This study shows that, for every new PET or SPECT radioligand and when estimation of specific binding is based on a reference structure, it is important to determine the uniformity of nonspecific binding before proceeding with human investigations.
机译:由于5HT2A受体(5HT2AR)在几种神经精神疾病中的假定作用,因此在体内研究它是一个重要的目标。 18F-setoperone是一种经过广泛验证的PET放射性配体,用于研究新皮质5HT2AR。我们先前已经开发并在狒狒中验证了一种方法,该方法可基于单剂量示踪剂量动态18F-setoperone在逐个像素的基础上生成结合势(即k3与k4的比率)的参数图PET范例,并以受体小脑为参考结构。但是,先前的半定量PET人体研究表明,新皮层中的非特异性(NS)结合可能与小脑中的非特异性(NS)结合不同。方法:作为开发人类k3:k4参数图谱的第一步,因此,我们直接估算了每天2周之前和之后用PET研究的四位年轻健康志愿者在新皮层中18F-setoperone的NS结合口服剂量的sertindole,一种具有强5HT2AR拮抗活性的非典型抗精神病药。结果:对120分钟内获得的动态PET数据进行了目视分析,证实实际上已经达到了完全的受体饱和。然而,晚期新皮质时间活动曲线(TACs)逐渐下降至比相应的小脑TAC更低的摄取值,并且无法根据四室(四室)非线性模型进行拟合,表明缺乏特异性结合。对照和挑战条件的小脑TAC以及挑战新皮质TAC均根据三Cpt模型进行拟合,提供k / k6比率,进而提供两种结构的f2分数。尽管只有四个对象的样本很小,但新皮层的f2分数比小脑估计的要大得多(即NS结合更小)。这使我们能够使用挑战性新皮层作为参考结构,即完全不使用小脑,确定对照新皮层的k3-k4比。这种“无假设”方法也已成功用于生成这四个对象的k3:k4映射,这些映射显示了颞皮层的最高值。结论:这项研究表明,对于每种新的PET或SPECT放射性配体,当基于参考结构估算特异性结合时,在进行人体研究之前确定非特异性结合的均匀性很重要。

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