Quantitative susceptibility mapping in the brain reflects spatial expression of genes involved in iron homeostasis and myelination

定量磁化率图 灰质 髓鞘 铁蛋白 人脑 白质 核磁共振 生物 化学 磁共振成像 神经科学 生物化学 中枢神经系统 医学 物理 放射科
作者
Zoë Cohen,Laurance Lau,Maruf Ahmed,Clifford R. Jack,Chunlei Liu
出处
期刊:Human Brain Mapping [Wiley]
卷期号:45 (9): e26688-e26688 被引量:5
标识
DOI:10.1002/hbm.26688
摘要

Abstract Quantitative susceptibility mapping (QSM) is an MRI modality used to non‐invasively measure iron content in the brain. Iron exhibits a specific anatomically varying pattern of accumulation in the brain across individuals. The highest regions of accumulation are the deep grey nuclei, where iron is stored in paramagnetic molecule ferritin. This form of iron is considered to be what largely contributes to the signal measured by QSM in the deep grey nuclei. It is also known that QSM is affected by diamagnetic myelin contents. Here, we investigate spatial gene expression of iron and myelin related genes, as measured by the Allen Human Brain Atlas, in relation to QSM images of age‐matched subjects. We performed multiple linear regressions between gene expression and the average QSM signal within 34 distinct deep grey nuclei regions. Our results show a positive correlation ( p < .05, corrected) between expression of ferritin and the QSM signal in deep grey nuclei regions. We repeated the analysis for other genes that encode proteins thought to be involved in the transport and storage of iron in the brain, as well as myelination. In addition to ferritin, our findings demonstrate a positive correlation ( p < .05, corrected) between the expression of ferroportin, transferrin, divalent metal transporter 1, several gene markers of myelinating oligodendrocytes, and the QSM signal in deep grey nuclei regions. Our results suggest that the QSM signal reflects both the storage and active transport of iron in the deep grey nuclei regions of the brain.
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