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使用QSM并在7T磁场下测量的正常衰老大脑中的铁负荷:SENIOR队列的研究结果。

Iron load in the normal aging brain measured with QSM and at 7T: findings of the SENIOR cohort.

作者信息

Guevara Miguel, Roche Stéphane, Brochard Vincent, Cam Davy, Badagbon Jacques, Leprince Yann, Bottlaender Michel, Cointepas Yann, Mangin Jean-François, de Rochefort Ludovic, Vignaud Alexandre

机构信息

Université Paris-Saclay, CEA, CNRS, BAOBAB, Neurospin, Gif-sur-Yvette, France.

CATI, US52-UAR2031, CEA, ICM, Sorbonne Université, CNRS, INSERM, APHP, Ile de France, France.

出版信息

Front Neuroimaging. 2024 Oct 21;3:1359630. doi: 10.3389/fnimg.2024.1359630. eCollection 2024.

Abstract

BACKGROUND

Iron accumulates in the brain during aging and is the focus of intensive research as an abnormal load, particularly in Deep Gray Matter (DGM), is related to neurodegeneration. Magnetic Resonance Imaging (MRI) metrics such as Quantitative Susceptibility Mapping (QSM) and apparent transverse relaxation rate can be used to follow up iron . While the influence of age and sex on iron levels has already been reported, a careful consideration of neuronal risk factors, as well as for an enhanced sensitivity, is needed to define the normal evolution.

METHODS

QSM and at ultra-high field MRI are used to study iron in DGM using a carefully-characterized cohort of the healthy aging brain (SENIOR). Seventy-seven cognitively healthy elders (from 54 to 78 y/o) with clinical, biology, genetics, and cardiovascular risk factors careful evaluation. Differences linked with age, sex, cardiovascular risk factors and weight are studied.

RESULTS

Age and sex have an influence on the brain iron deposition measured by QSM and in a context of normal aging, without appearance of a pathological neurodegenerative process. Iron deposition shows higher values in the caudate and the putamen in older participants. Female participants present a higher level of iron in the amygdala, and males in the thalamus. Female participants also present differences in the accumbens, caudate and hippocampus when evaluating the joint age and sex effect. Participants with higher cardiovascular risk factors showed higher values of the iron, even without any impairment in their cognitive capability. An overweight is related with a higher iron load in the putamen for QSM and in female participants. We controlled that these modifications of iron deposition are not related to a specific profile in the genotype of ApoE loci.

CONCLUSIONS

Establishing baseline values of QSM and as iron probes in the context of aging is essential to determine differences in the process of neurodegeneration. Age and sex of participants are important factors that affect brain iron normal values. On the other hand, the presence of cardiovascular risk factors, which can be associated with age related diseases, can also potentially be linked with the iron deposition in the brain.

摘要

背景

铁在衰老过程中会在大脑中蓄积,作为一种异常负荷,它是深入研究的焦点,尤其是深部灰质(DGM)中的铁负荷与神经退行性变有关。磁共振成像(MRI)指标,如定量磁化率图谱(QSM)和表观横向弛豫率,可用于追踪铁含量。虽然年龄和性别对铁水平的影响已有报道,但为了明确正常变化情况,需要仔细考虑神经元危险因素以及提高敏感性。

方法

使用超高场MRI的QSM和表观横向弛豫率,通过精心表征的健康衰老大脑队列(SENIOR)来研究DGM中的铁。对77名认知健康的老年人(年龄在54至78岁之间)进行了临床、生物学、遗传学和心血管危险因素的仔细评估。研究了与年龄、性别、心血管危险因素和体重相关的差异。

结果

在正常衰老的情况下,年龄和性别会对通过QSM和表观横向弛豫率测量的脑铁沉积产生影响,且未出现病理性神经退行性变过程。老年参与者尾状核和壳核中的铁沉积值更高。女性参与者杏仁核中的铁含量较高,男性丘脑中铁含量较高。在评估年龄和性别联合效应时,女性参与者在伏隔核、尾状核和海马体中也存在差异。心血管危险因素较高的参与者铁含量值更高,即使他们的认知能力没有任何损害。超重与女性参与者QSM和表观横向弛豫率测量的壳核中铁负荷较高有关。我们证实这些铁沉积的改变与载脂蛋白E基因座基因型的特定特征无关。

结论

在衰老背景下建立QSM和表观横向弛豫率作为铁探针的基线值,对于确定神经退行性变过程中的差异至关重要。参与者的年龄和性别是影响脑铁正常值的重要因素。另一方面,心血管危险因素的存在可能与年龄相关疾病有关,也可能与脑铁沉积有关。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/cf93/11533018/c5ccfda9953c/fnimg-03-1359630-g0001.jpg

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