Sheffield Institute for Translational Neuroscience (SITraN), University of Sheffield, UK.
Curr Opin Neurol. 2020 Oct;33(5):662-668. doi: 10.1097/WCO.0000000000000854.
This review draws together the most recent findings in ALS biomarker research from biochemical, imaging and neurophysiology techniques.
The potential of circulating RNA is highlighted, including new retrieval techniques. With ongoing genetic clinical trials, the need for pharmacodynamic biomarkers is essential. There is a strong case for neurofilament proteins being validated in ALS; their biomarker profile is discussed. Oxidative stress and neuroinflammation studies offer insight into disease mechanisms and offer good biomarker potential. Recent metabolic studies include investigation of lipid profiles, creatinine and ferritin. The potential of chitinase proteins as pharmacodynamic and prognostic biomarkers is highlighted. The role of tau and amyloidβ is debated, as evidenced by the articles presented here. Proteomic approaches provide unbiased discoveries of novel biomarkers, together with confirmation of previous findings. The use of imaging techniques is outlined to demonstrate selective atrophy, volume loss, muscle and tract involvement. In-vivo imaging is discussed with reference to histone deacetylase, oxidative stress, neuroinflammation and metabolic changes. New applications of electrophysiology demonstrate objective muscle biomarkers and brain network perturbations.
The biomarker research field continues to provide insight into the disease. Multicentre collaborations are needed to validate these promising recent findings.
本文综述了生物化学、影像学和神经生理学技术在 ALS 生物标志物研究中的最新发现。
循环 RNA 的潜力得到了强调,包括新的检索技术。随着正在进行的遗传临床试验,对药效动力学生物标志物的需求至关重要。神经丝蛋白作为 ALS 的验证生物标志物具有很强的说服力;讨论了它们的生物标志物特征。氧化应激和神经炎症研究提供了对疾病机制的深入了解,并具有很好的生物标志物潜力。最近的代谢研究包括对脂质谱、肌酸和铁蛋白的研究。壳聚糖酶蛋白作为药效动力学和预后生物标志物的潜力得到了强调。这里呈现的文章证明了 tau 和淀粉样β的作用存在争议。蛋白质组学方法提供了对新生物标志物的无偏发现,同时也证实了先前的发现。本文概述了影像学技术的应用,以展示选择性萎缩、体积损失、肌肉和束受累。结合组蛋白去乙酰化酶、氧化应激、神经炎症和代谢变化,讨论了体内成像。电生理学的新应用证明了客观的肌肉生物标志物和大脑网络扰动。
生物标志物研究领域继续为疾病提供深入了解。需要多中心合作来验证这些有前途的最新发现。