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采用自由水校正的扩散张量成像揭示了I型黏多糖贮积症严重亚型与轻度亚型之间的差异。

Diffusion tensor imaging with free-water correction reveals distinctions between severe and attenuated subtypes in Mucopolysaccharidosis type I.

作者信息

Svatkova Alena, Pasternak Ofer, Eisengart Julie B, Rudser Kyle D, Bednařík Petr, Mueller Bryon A, Delaney Kathleen A, Shapiro Elsa G, Whitley Chester B, Nestrašil Igor

机构信息

Department of Pediatrics, Medical School, University of Minnesota, Minneapolis, Minnesota, USA.

Danish Research Centre for Magnetic Resonance, Centre for Functional and Diagnostic Imaging and Research, Copenhagen University Hospital Amager and Hvidovre, Copenhagen, Denmark.

出版信息

J Inherit Metab Dis. 2025 Jan;48(1):e12830. doi: 10.1002/jimd.12830.

Abstract

Mucopolysaccharidosis type I (MPS I) is an inherited lysosomal storage disorder leading to deleterious brain effects. While animal models suggested that MPS I severely affects white matter (WM), whole-brain diffusion tensor imaging (DTI) analysis was not performed due to MPS-related morphological abnormalities. 3T DTI data from 28 severe (MPS IH, treated with hematopoietic stem cell transplantation-HSCT), 16 attenuated MPS I patients (MPS IA) enrolled under the study protocol NCT01870375, and 27 healthy controls (HC) were analyzed using the free-water correction (FWC) method to resolve macrostructural partial volume effects and unravel differences in DTI metrics accounting for microstructural abnormalities. FWC analysis in MPS IH compared to HC revealed higher free-water fraction (FWF) in all WM regions with increased radial (RD) and mean diffusivity (MD). Higher RD, MD, and FWF in cingulate and FWF in temporal WM were observed in MPS IA relative to HC. FWF and RD in the corpus callosum (CC) were higher in MPS IH than in MPS IA. Reaction time was correlated with fractional anisotropy (FA) in frontal and parietal WM in MPS IH. FA in temporal and central WM correlated with d-prime in MPS IA. The HSCT age was related to FA in parietal WM and FWF in frontal WM in MPS IH. FWC delineated subtype-specific WM microstructural abnormalities linked to myelination that were more extensive in MPS IH than IA, with CC findings being a key differentiator between subtypes. Earlier age at HSCT was related to preserved WM microstructure in the brain of MPS IH patients. Free water-corrected DTI distinguishes severe and attenuated MPS I patients and reveals a relationship between attention, age at HSCT, and white matter microstructure.

摘要

I型黏多糖贮积症(MPS I)是一种遗传性溶酶体贮积病,会对大脑产生有害影响。虽然动物模型表明MPS I会严重影响白质(WM),但由于MPS相关的形态学异常,尚未进行全脑扩散张量成像(DTI)分析。对28名重症患者(MPS IH,接受造血干细胞移植-HSCT治疗)、16名轻型MPS I患者(MPS IA,根据研究方案NCT01870375入组)以及27名健康对照(HC)的3T DTI数据,采用自由水校正(FWC)方法进行分析,以解决宏观结构部分容积效应,并揭示考虑微观结构异常的DTI指标差异。与HC相比,MPS IH的FWC分析显示,所有白质区域的自由水分数(FWF)更高,径向扩散率(RD)和平均扩散率(MD)增加。与HC相比,MPS IA患者扣带回的RD、MD和FWF更高,颞叶白质的FWF更高。MPS IH患者胼胝体(CC)的FWF和RD高于MPS IA患者。MPS IH患者的反应时间与额叶和顶叶白质的各向异性分数(FA)相关。MPS IA患者颞叶和中央白质的FA与辨别力(d')相关。MPS IH患者的HSCT年龄与顶叶白质的FA和额叶白质的FWF相关。FWC描绘了与髓鞘形成相关的亚型特异性白质微观结构异常,在MPS IH中比MPS IA更广泛,CC的结果是亚型之间的关键区别因素。HSCT年龄越早与MPS IH患者大脑中保留的白质微观结构有关。自由水校正的DTI可以区分重症和轻型MPS I患者,并揭示注意力、HSCT年龄和白质微观结构之间的关系。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/6718/11703597/10e8ce90d9d2/JIMD-48-0-g002.jpg

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