Department of Psychiatry, Western Psychiatric Institute and Clinic of University of Pittsburgh Medical Center, Pittsburgh, PA, USA.
Department of Bioengineering, University of Pittsburgh, Pittsburgh, PA, USA.
Int J Geriatr Psychiatry. 2017 Dec;32(12):1226-1232. doi: 10.1002/gps.4585. Epub 2016 Sep 19.
Eotaxin is a chemokine that exerts negative effects on neurogenesis. We recently showed that peripheral eotaxin levels correlate with both lower gray matter volume and poorer executive performance in older adults with major depressive disorder. These findings suggest that the relationship between eotaxin and set-shifting may be accounted for by lower gray matter volume in specific regions. Prior studies have identified specific gray matter regions that correlate with set-shifting performance, but have not examined whether these specific gray matter regions mediate the cross-sectional association between eotaxin and set-shifting.
In 27 older adults (mean age: 68 ± 5.2 years) with major depressive disorder, we performed a whole brain (voxel-wise) analysis testing whether/where gray matter density statistically mediates the cross-sectional association of eotaxin and set-shifting performance.
We found the association between eotaxin and set-shifting performance was fully statistically mediated by lower gray matter density in left middle cingulate, right pre-/post-central, lingual, inferior/superior frontal, cuneus, and middle temporal regions.
The regions identified above may be both susceptible to a potential neurodegenerative effect of eotaxin, and critical to preserving set-shifting function. Longitudinal and intervention studies are needed to further evaluate whether targeting eotaxin levels will prevent neurodegeneration and executive impairment in older adults with depression. Copyright © 2016 John Wiley & Sons, Ltd.
趋化因子 eotaxin 对神经发生有负面影响。我们最近发现,外周 eotaxin 水平与患有重度抑郁症的老年人大脑灰质体积降低和执行功能下降相关。这些发现表明,eotaxin 与转换能力之间的关系可能是由特定区域的灰质体积降低引起的。先前的研究已经确定了与转换能力相关的特定灰质区域,但尚未检查这些特定灰质区域是否调节 eotaxin 与转换能力之间的横断面关联。
在 27 名患有重度抑郁症的老年人(平均年龄:68±5.2 岁)中,我们进行了全脑(体素)分析,以测试灰质密度是否在统计学上调节 eotaxin 和转换能力之间的横断面关联。
我们发现,eotaxin 与转换能力之间的关联完全由左中央扣带回、右额/中央后、舌回、额下回/上回、楔前叶和中颞叶的灰质密度降低所介导。
上述区域可能既容易受到 eotaxin 潜在神经退行性作用的影响,又对保持转换能力至关重要。需要进行纵向和干预研究,以进一步评估靶向 eotaxin 水平是否会预防抑郁症老年患者的神经退行性变和执行功能障碍。版权所有 © 2016 John Wiley & Sons, Ltd.