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CDKL5 缺乏症中脑功能的电生理生物标志物。

Electrophysiological biomarkers of brain function in CDKL5 deficiency disorder.

作者信息

Saby Joni N, Mulcahey Patrick J, Zavez Alexis E, Peters Sarika U, Standridge Shannon M, Swanson Lindsay C, Lieberman David N, Olson Heather E, Key Alexandra P, Percy Alan K, Neul Jeffrey L, Nelson Charles A, Roberts Timothy P L, Benke Timothy A, Marsh Eric D

机构信息

Division of Radiology Research, Children's Hospital of Philadelphia, Philadelphia, PA 19104, USA.

Division of Child Neurology, Children's Hospital of Philadelphia, Philadelphia, PA 19104, USA.

出版信息

Brain Commun. 2022 Aug 4;4(4):fcac197. doi: 10.1093/braincomms/fcac197. eCollection 2022.

Abstract

CDKL5 deficiency disorder is a debilitating developmental and epileptic encephalopathy for which no targeted treatment exists. A number of promising therapeutics are under development for CDKL5 deficiency disorder but a lack of validated biomarkers of brain function and clinical severity may limit the ability to objectively assess the efficacy of new treatments as they become available. To address this need, the current study quantified electrophysiological measures in individuals with CDKL5 deficiency disorder and the association between these parameters and clinical severity. Visual and auditory evoked potentials, as well as resting EEG, were acquired across 5 clinical sites from 26 individuals with CDKL5 deficiency disorder. Evoked potential and quantitative EEG features were calculated and compared with typically developing individuals in an age- and sex-matched cohort. Baseline and Year 1 data, when available, were analysed and the repeatability of the results was tested. Two clinician-completed severity scales were used for evaluating the clinical relevance of the electrophysiological parameters. Group-level comparisons revealed reduced visual evoked potential amplitude in CDKL5 deficiency disorder individuals versus typically developing individuals. There were no group differences in the latency of the visual evoked potentials or in the latency or amplitude of the auditory evoked potentials. Within the CDKL5 deficiency disorder group, auditory evoked potential amplitude correlated with disease severity at baseline as well as Year 1. Multiple quantitative EEG features differed between CDKL5 deficiency disorder and typically developing participants, including amplitude standard deviation, 1/f slope and global delta, theta, alpha and beta power. Several quantitative EEG features correlated with clinical severity, including amplitude skewness, theta/delta ratio and alpha/delta ratio. The theta/delta ratio was the overall strongest predictor of severity and also among the most repeatable qEEG measures from baseline to Year 1. Together, the present findings point to the utility of evoked potentials and quantitative EEG parameters as objective measures of brain function and disease severity in future clinical trials for CDKL5 deficiency disorder. The results also underscore the utility of the current methods, which could be similarly applied to the identification and validation of electrophysiological biomarkers of brain function for other developmental encephalopathies.

摘要

CDKL5缺乏症是一种使人衰弱的发育性和癫痫性脑病,目前尚无针对性治疗方法。针对CDKL5缺乏症,有多种有前景的治疗方法正在研发中,但缺乏经过验证的脑功能和临床严重程度生物标志物,可能会限制在新治疗方法出现时客观评估其疗效的能力。为满足这一需求,本研究对CDKL5缺乏症患者的电生理指标进行了量化,并分析了这些参数与临床严重程度之间的关联。在5个临床地点,对26名CDKL5缺乏症患者进行了视觉和听觉诱发电位以及静息脑电图检查。计算诱发电位和定量脑电图特征,并与年龄和性别匹配的正常发育个体进行比较。对可用的基线数据和第1年数据进行了分析,并测试了结果的可重复性。使用两种由临床医生完成的严重程度量表来评估电生理参数的临床相关性。组间比较显示,与正常发育个体相比,CDKL5缺乏症患者的视觉诱发电位振幅降低。视觉诱发电位的潜伏期、听觉诱发电位的潜伏期或振幅在两组之间没有差异。在CDKL5缺乏症组中,听觉诱发电位振幅与基线以及第1年的疾病严重程度相关。CDKL5缺乏症患者与正常发育参与者之间存在多种定量脑电图特征差异,包括振幅标准差、1/f斜率以及全局δ、θ、α和β功率。一些定量脑电图特征与临床严重程度相关,包括振幅偏度、θ/δ比率和α/δ比率。θ/δ比率是严重程度的总体最强预测指标,也是从基线到第1年最具可重复性的定量脑电图测量指标之一。总之,本研究结果表明,诱发电位和定量脑电图参数在未来CDKL5缺乏症的临床试验中可作为脑功能和疾病严重程度的客观测量指标。研究结果还强调了当前方法的实用性,这些方法可类似地应用于其他发育性脑病脑功能电生理生物标志物的识别和验证。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/e741/9374482/b8488da6155c/fcac197ga1.jpg

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