Department of Psychiatry and Behavioral Neurobiology, University of Alabama, Birmingham, AL, USA.
Psychiatry Res. 2012 Aug-Sep;203(2-3):111-25. doi: 10.1016/j.pscychresns.2012.02.003. Epub 2012 Sep 13.
This meta-analysis evaluates alterations of neurometabolites in schizophrenia and bipolar disorder. PubMed was searched to find controlled studies evaluating N-acetylaspartate (NAA), Choline (Cho) and Creatine (Cr) assessed with ((1))H-MRS (proton magnetic resonance spectroscopy) in patients with schizophrenia and bipolar disorder up to September 2010. Random effects meta-analyses were conducted to estimate pooled standardized mean differences. The statistic was used to quantify inconsistencies. Subgroup analyses were conducted to explore potential explanations for inconsistencies. The systematic review included 146 studies with 5643 participants. NAA levels were affected in schizophrenia and bipolar disorder. Decreased levels in the basal ganglia and frontal lobe were the most consistent findings in schizophrenia; decreased levels in the basal ganglia were the most consistent findings in bipolar disorder. Cho and Cr levels were not altered in either disorder. Findings for Cr were most consistent in the thalamus, frontal lobe and dorsolateral prefrontal cortex in schizophrenia and the basal ganglia and frontal lobe in bipolar disorder. Findings for Cho were most consistent in the thalamus, frontal lobe and anterior cingulate cortex in schizophrenia and basal ganglia in bipolar disorder. Large, carefully designed studies are needed to better estimate the extent of alterations in neurometabolites.
这项荟萃分析评估了精神分裂症和双相情感障碍患者的神经代谢物变化。检索了 PubMed 数据库,以找到截至 2010 年 9 月评估精神分裂症和双相情感障碍患者的 N-乙酰天门冬氨酸(NAA)、胆碱(Cho)和肌酸(Cr)的对照研究。采用随机效应荟萃分析来估计合并后的标准化均数差值。采用统计学方法来量化不一致性。进行了亚组分析以探讨不一致性的潜在解释。该系统综述共纳入 146 项研究,涉及 5643 名参与者。精神分裂症和双相情感障碍患者的 NAA 水平受到影响。在精神分裂症中,基底节和额叶的水平降低是最一致的发现;在双相情感障碍中,基底节的水平降低是最一致的发现。两种疾病的 Cho 和 Cr 水平均未改变。在精神分裂症中,Cr 的发现最一致的部位是丘脑、额叶和背外侧前额叶皮质,在双相情感障碍中,Cr 的发现最一致的部位是基底节和额叶。在精神分裂症中,Cho 的发现最一致的部位是丘脑、额叶和前扣带皮质,在双相情感障碍中,Cho 的发现最一致的部位是基底节。需要进行大型、精心设计的研究,以更好地估计神经代谢物变化的程度。