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帕金森病患者生物钟的分子特征研究方案-CLOCK4PD 研究方案。

Molecular characterization of the circadian clock in patients with Parkinson's disease-CLOCK4PD Study protocol.

机构信息

Institute for Theoretical Biology (ITB), Charité-Universitätsmedizin Berlin, Corporate Member of Freie Universität Berlin, Humboldt-Universität zu Berlin and Berlin Institute of Health, Berlin, Germany.

Molecular Cancer Research Center (MKFZ), Medical Department of Hematology, Oncology, and Tumour Immunology, Charité-Universitätsmedizin Berlin, Corporate Member of Freie Universität Berlin, Humboldt-Universität zu Berlin and Berlin Institute of Health, Berlin, Germany.

出版信息

PLoS One. 2024 Jul 19;19(7):e0305712. doi: 10.1371/journal.pone.0305712. eCollection 2024.

Abstract

INTRODUCTION

Circadian rhythms (CRs) orchestrate intrinsic 24-hour oscillations which synchronize an organism's physiology and behaviour with respect to daily cycles. CR disruptions have been linked to Parkinson's Disease (PD), the second most prevalent neurodegenerative disorder globally, and are associated to several PD-symptoms such as sleep disturbances. Studying molecular changes of CR offers a potential avenue for unravelling novel insights into the PD progression, symptoms, and can be further used for optimization of treatment strategies. Yet, a comprehensive characterization of the alterations at the molecular expression level for core-clock and clock-controlled genes in PD is still missing.

METHODS AND ANALYSIS

The proposed study protocol will be used to characterize expression profiles of circadian genes obtained from saliva samples in PD patients and controls. For this purpose, 20 healthy controls and 70 PD patients will be recruited. Data from clinical assessment, questionnaires, actigraphy tracking and polysomnography will be collected and clinical evaluations will be repeated as a follow-up in one-year time. We plan to carry out sub-group analyses considering several clinical factors (e.g., biological sex, treatment dosages, or fluctuation of symptoms), and to correlate reflected changes in CR of measured genes with distinct PD phenotypes (diffuse malignant and mild/motor-predominant). Additionally, using NanoStringⓇ multiplex technology on a subset of samples, we aim to further explore potential CR alterations in hundreds of genes involved in neuropathology pathways.

DISCUSSION

CLOCK4PD is a mono-centric, non-interventional observational study aiming at the molecular characterization of CR alterations in PD. We further plan to determine physiological modifications in sleep and activity patterns, and clinical factors correlating with the observed CR changes. Our study may provide valuable insights into the intricate interplay between CR and PD with a potential to be used as a predictor of circadian alterations reflecting distinct disease phenotypes, symptoms, and progression outcomes.

摘要

简介

昼夜节律(CRs)协调内在的 24 小时波动,使生物体的生理和行为与日常周期同步。CR 紊乱与帕金森病(PD)有关,PD 是全球第二大常见的神经退行性疾病,与 PD 的几种症状相关,如睡眠障碍。研究 CR 的分子变化为揭示 PD 进展、症状的新见解提供了潜在途径,并可进一步用于优化治疗策略。然而,核心时钟和时钟控制基因在 PD 中的分子表达水平的改变仍缺乏全面的特征描述。

方法和分析

拟议的研究方案将用于描述从 PD 患者和对照的唾液样本中获得的昼夜节律基因的表达谱。为此,将招募 20 名健康对照和 70 名 PD 患者。将收集临床评估、问卷、活动跟踪和多导睡眠图的数据,并在一年时间内进行随访以重复临床评估。我们计划进行亚组分析,考虑几个临床因素(例如,生物性别、治疗剂量或症状波动),并将测量基因的 CR 反映变化与不同的 PD 表型(弥漫性恶性和轻度/运动为主)相关联。此外,我们计划使用 NanoString Ⓡ 多重技术在一部分样本中进一步探索涉及神经病理学途径的数百个基因的潜在 CR 改变。

讨论

CLOCK4PD 是一项单中心、非干预性观察性研究,旨在对 PD 中的 CR 改变进行分子特征描述。我们还计划确定睡眠和活动模式的生理变化,以及与观察到的 CR 变化相关的临床因素。我们的研究可能为 CR 与 PD 之间的复杂相互作用提供有价值的见解,并有可能成为反映不同疾病表型、症状和进展结果的昼夜节律改变的预测指标。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/fa70/11259294/b0b837e4bfe5/pone.0305712.g001.jpg

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