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通过功能超声成像对铜离子螯合剂诱导的脱髓鞘中血管功能障碍的新见解。

Novel insights into vascular dysfunction in cuprizone-induced demyelination through functional ultrasound imaging.

作者信息

Beliard Benoit, Delay Lauriane, Travert-Jouanneau Youenn, Ialy-Radio Nathalie, Isaad Célia, Réaux-Le Goazigo Annabelle, Deffieux Thomas, Bradley Daniel P, Tanter Mickael, Pezet Sophie

机构信息

Physics for Medicine Paris, Inserm, ESPCI Paris, CNRS, PSL Research University, Paris, France.

Sorbonne Université, INSERM, CNRS, Institut de la vision, Paris, France.

出版信息

Imaging Neurosci (Camb). 2025 Apr 10;3. doi: 10.1162/imag_a_00534. eCollection 2025.

Abstract

Multiple Sclerosis (MS) is an autoimmune disease of the central nervous system (CNS), affecting 2.8 million people worldwide, that presents multiple features, one of which is demyelination. Although treatments exist to manage the condition, no cure has been found to stop the progression of neurodegeneration. To develop new treatments and investigate the multiple systems impacted by MS, new imaging technologies are needed at the preclinical stage. Functional ultrasound imaging (fUS) has recently emerged as a robust method to measure brain cerebral blood volume (CBV) dynamics as an indirect indicator of neural activity. This study aimed to quantify the amplitude of alteration of evoked hemodynamic response in the somatosensory cortex, and its potential link with demyelination in a mouse model of CNS demyelination induced by cuprizone. We demonstrate that extended demyelination leads to an increased hemodynamic response in the primary sensory cortex, both spatially and temporally, aligning with fMRI findings in MS patients. Second, using descriptors of the evoked cortical hemodynamic response, we demonstrate that certain parameters (the number of active pixels and the rise time) correlate with the level of Myelin Basic Protein in the primary sensory cortex and the thalamus, when taken together. Interestingly, the increased CBV is not associated with demyelination but instead reflects the well-documented vascular alteration described in MS. Moreover, these changes were absent in the thalamus, and in focalized demyelinated lesions induced by lysolecithin injection, suggesting the involvement of specific cortical mechanisms driven by oligodendrocyte depletion. In conclusion, our study introduces a novel, non-invasive functional approach for investigating vascular dysfunction in the context of MS, addressing an important yet understudied aspect in both pre-clinical and clinical research.

摘要

多发性硬化症(MS)是一种中枢神经系统(CNS)的自身免疫性疾病,全球有280万人受其影响,它具有多种特征,其中之一是脱髓鞘。尽管有治疗方法来控制这种疾病,但尚未找到治愈方法来阻止神经退行性变的进展。为了开发新的治疗方法并研究受MS影响的多个系统,临床前阶段需要新的成像技术。功能超声成像(fUS)最近已成为一种强大的方法,可测量脑血容量(CBV)动态变化,作为神经活动的间接指标。本研究旨在量化在由双环己酮草酰二腙诱导的中枢神经系统脱髓鞘小鼠模型中,体感皮层诱发的血流动力学反应的变化幅度,及其与脱髓鞘的潜在联系。我们证明,长期脱髓鞘会导致初级感觉皮层在空间和时间上的血流动力学反应增加,这与MS患者的功能磁共振成像(fMRI)结果一致。其次,使用诱发的皮层血流动力学反应的描述符,我们证明某些参数(活动像素数量和上升时间)合在一起时,与初级感觉皮层和丘脑中髓鞘碱性蛋白的水平相关。有趣的是,CBV增加与脱髓鞘无关,而是反映了MS中已充分记录的血管改变。此外,这些变化在丘脑中不存在,在溶血卵磷脂注射诱导的局灶性脱髓鞘病变中也不存在,这表明少突胶质细胞耗竭驱动的特定皮层机制参与其中。总之,我们的研究引入了一种新颖的、非侵入性的功能方法,用于研究MS背景下的血管功能障碍,解决了临床前和临床研究中一个重要但研究不足的方面。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/b8b9/12319804/a6e4400ceb9c/imag_a_00534_fig1.jpg

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