脑源性神经营养因子
灰色(单位)
神经科学
双相情感障碍
大脑大小
心理学
神经营养因子
医学
内科学
认知
磁共振成像
核医学
放射科
受体
作者
Sara Poletti,Veronica Aggio,Thomas A. Hoogenboezem,Oliver Ambrée,Harriet de Wit,Annemarie Wijkhuijs,Clara Locatelli,Cristina Colombo,Volker Arolt,Hemmo A. Drexhage,Francesco Benedetti
标识
DOI:10.1016/j.eurpsy.2016.06.008
摘要
Abstract Introduction Bipolar Disorder (BD) is a severe psychiatric condition characterized by grey matter (GM) volumes reduction. Neurotrophic factors have been suggested to play a role in the neuroprogressive changes during the illness course. In particular peripheral brain-derived neurotrophic factor (BDNF) has been proposed as a potential biomarker related to disease activity and neuroprogression in BD. The aim of our study was to investigate if serum levels of BDNF are associated with GM volumes in BD patients and healthy controls (HC). Methods We studied 36 inpatients affected by a major depressive episode in course of BD type I and 17 HC. Analysis of variance was performed to investigate the effect of diagnosis on GM volumes in the whole brain. Threshold for significance was P < 0.05, Family Wise Error (FWE) corrected for multiple comparisons. All the analyses were controlled for the effect of nuisance covariates known to influence GM volumes, such as age, gender and lithium treatment. Results BD patients showed significantly higher serum BDNF levels compared with HC. Reduced GM volumes in BD patients compared to HC were observed in several brain areas, encompassing the caudate head, superior temporal gyrus, insula, fusiform gyrus, parahippocampal gyrus, and anterior cingulate cortex. The interaction analysis between BDNF levels and diagnosis showed a significant effect in the middle frontal gyrus. HC reported higher BDNF levels associated with higher GM volumes, whereas no association between BDNF and GM volumes was observed in BD. Discussion Our study seems to suggest that although the production of BDNF is increased in BD possibly to prevent and repair neural damage, its effects could be hampered by underlying neuroinflammatory processes interfering with the neurodevelopmental role of BDNF.
科研通智能强力驱动
Strongly Powered by AbleSci AI