School of Engineering, Deakin University, 3216, Geelong, Victoria, Australia.
Division of Engineering, Mayo Clinic, 55905, Rochester, MN, USA.
Fluids Barriers CNS. 2021 Dec 1;18(1):52. doi: 10.1186/s12987-021-00292-x.
Contemporary biomarker collection techniques in blood and cerebrospinal fluid have to date offered only modest clinical insights into neurologic diseases such as epilepsy and glioma. Conversely, the collection of human electroencephalography (EEG) data has long been the standard of care in these patients, enabling individualized insights for therapy and revealing fundamental principles of human neurophysiology. Increasing interest exists in simultaneously measuring neurochemical biomarkers and electrophysiological data to enhance our understanding of human disease mechanisms. This review compares microdialysis, microperfusion, and implanted EEG probe architectures and performance parameters. Invasive consequences of probe implantation are also investigated along with the functional impact of biofouling. Finally, previously developed microdialysis electrodes and microperfusion electrodes are reviewed in preclinical and clinical settings. Critically, current and precedent microdialysis and microperfusion probes lack the ability to collect neurochemical data that is spatially and temporally coincident with EEG data derived from depth electrodes. This ultimately limits diagnostic and therapeutic progress in epilepsy and glioma research. However, this gap also provides a unique opportunity to create a dual-sensing technology that will provide unprecedented insights into the pathogenic mechanisms of human neurologic disease.
目前,血液和脑脊液中的当代生物标志物采集技术仅为癫痫和神经胶质瘤等神经疾病提供了有限的临床见解。相反,在这些患者中,长期以来,人类脑电图 (EEG) 数据的采集一直是标准的护理方法,使治疗具有个性化的见解,并揭示了人类神经生理学的基本原理。人们越来越感兴趣的是同时测量神经化学生物标志物和电生理数据,以增强我们对人类疾病机制的理解。本文比较了微透析、微灌注和植入式 EEG 探头的架构和性能参数。还研究了探头植入的侵入性后果以及生物污垢的功能影响。最后,在临床前和临床环境中回顾了先前开发的微透析电极和微灌注电极。关键是,当前和以前的微透析和微灌注探头缺乏从深部电极获得的 EEG 数据的空间和时间上与神经化学数据同时采集的能力。这最终限制了癫痫和神经胶质瘤研究中的诊断和治疗进展。然而,这一差距也为创建一种双重感应技术提供了独特的机会,该技术将为人类神经疾病的发病机制提供前所未有的见解。