Feigin A, Tang C, Ma Y, Mattis P, Zgaljardic D, Guttman M, Paulsen J S, Dhawan V, Eidelberg D
Center for Neurosciences, The Feinstein Institute for Medical Research, North Shore-Long Island Jewish Health System, Manhasset, NY 11030, USA.
Brain. 2007 Nov;130(Pt 11):2858-67. doi: 10.1093/brain/awm217. Epub 2007 Sep 24.
The neural basis for the transition from preclinical to symptomatic Huntington's disease (HD) is unknown. We used serial positron emission tomography (PET) imaging in preclinical HD gene carriers (p-HD) to assess the metabolic changes that occur during this period. Twelve p-HD subjects were followed longitudinally with [11C]-raclopride and [18F]-fluorodeoxyglucose PET imaging, with scans at baseline, 18 and 44 months. Progressive declines in striatal D2-receptor binding were correlated with concurrent changes in regional metabolism and in the activity of an HD-related metabolic network. We found that striatal D2 binding declined over time (P < 0.005). The activity of a reproducible HD-related metabolic covariance pattern increased between baseline and 18 months (P < 0.003) but declined at 44 months (P < 0.04). These network changes coincided with progressive declines in striatal and thalamic metabolic activity (P < 0.01). Striatal metabolism was abnormally low at all time points (P < 0.005). By contrast, thalamic metabolism was elevated at baseline (P < 0.01), but fell to subnormal levels in the p-HD subjects who developed symptoms. These findings were confirmed with an MRI-based atrophy correction for each individual PET scan. Increases in network expression and thalamic glucose metabolism may be compensatory for early neuronal losses in p-HD. Declines in these measures may herald the onset of symptoms in gene carriers.
从临床前阶段到有症状的亨廷顿舞蹈病(HD)转变的神经基础尚不清楚。我们对临床前HD基因携带者(p-HD)进行了系列正电子发射断层扫描(PET)成像,以评估在此期间发生的代谢变化。12名p-HD受试者接受了[11C] - 雷氯必利和[18F] - 氟脱氧葡萄糖PET成像的纵向随访,在基线、18个月和44个月时进行扫描。纹状体D2受体结合的逐渐下降与区域代谢和HD相关代谢网络活性的同时变化相关。我们发现纹状体D2结合随时间下降(P < 0.005)。一种可重复的HD相关代谢协方差模式的活性在基线和18个月之间增加(P < 0.003),但在44个月时下降(P < 0.04)。这些网络变化与纹状体和丘脑代谢活性的逐渐下降同时发生(P < 0.01)。纹状体代谢在所有时间点均异常低(P < 0.005)。相比之下,丘脑代谢在基线时升高(P < 0.01),但在出现症状的p-HD受试者中降至低于正常水平。这些发现通过对每次PET扫描进行基于MRI的萎缩校正得到了证实。网络表达和丘脑葡萄糖代谢的增加可能是对p-HD早期神经元损失的代偿。这些指标的下降可能预示着基因携带者出现症状。