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帕金森病大脑中蛋白病的成像

Imaging of Proteinopathies in the Brains of Parkinsonian Disorders.

作者信息

Higuchi Makoto

机构信息

Advanced Neuroimaging Center, Institute for Quantum Medical Science, National Institutes for Quantum Science and Technology, Chiba 263-8555, Japan.

Neuroetiology and Diagnostic Science, Graduate School of Medicine, Osaka Metropolitan University, Osaka 545-8585, Japan.

出版信息

Cells. 2025 Sep 10;14(18):1418. doi: 10.3390/cells14181418.

DOI:10.3390/cells14181418
PMID:41002384
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC12468588/
Abstract

Neurodegenerative diseases such as Alzheimer's disease (AD), frontotemporal lobar degeneration (FTLD), and α-synucleinopathies-including Parkinson's disease (PD), dementia with Lewy bodies (DLB), and multiple system atrophy (MSA)-are characterized by the accumulation of misfolded protein aggregates. Advances in positron emission tomography (PET) imaging have enabled in vivo visualization of these pathologies, particularly tau and α-synuclein fibrils, facilitating early diagnosis and differential classification. Tau PET tracers such as F-florzolotau have demonstrated robust imaging of both AD-type and 4-repeat tauopathies, including atypical parkinsonian syndromes in FTLD such as progressive supranuclear palsy and corticobasal degeneration. Cryo-electron microscopy has elucidated the molecular interactions underlying tracer binding, highlighting hydrophobic grooves in cross-βstructures as binding components commonly present in multiple tau fibril types. For α-synucleinopathies, new tracers with a modified cross-β-binding scaffold, including F-SPAL-T-06 and F-C05-05, have shown promise in detecting MSA-related pathology and, more recently, midbrain pathology in PD and DLB. However, sensitive detection of pathologies in early PD/DLB stages remains a challenge. The integration of high-resolution PET technologies and structurally optimized ligands may enable earlier and more accurate detection of protein aggregates, supporting both clinical decision-making and the development of targeted disease-modifying therapies.

摘要

神经退行性疾病,如阿尔茨海默病(AD)、额颞叶变性(FTLD)和α-突触核蛋白病(包括帕金森病(PD)、路易体痴呆(DLB)和多系统萎缩(MSA)),其特征是错误折叠的蛋白质聚集体的积累。正电子发射断层扫描(PET)成像技术的进步使得这些病理变化能够在体内可视化,特别是tau蛋白和α-突触核蛋白原纤维,有助于早期诊断和鉴别分类。Tau PET示踪剂,如F-florzolotau,已显示出对AD型和4重复tau蛋白病的强大成像能力,包括FTLD中的非典型帕金森综合征,如进行性核上性麻痹和皮质基底节变性。冷冻电子显微镜已经阐明了示踪剂结合背后的分子相互作用,突出了交叉β结构中的疏水凹槽作为多种tau蛋白原纤维类型中常见的结合成分。对于α-突触核蛋白病,具有改良交叉β结合支架的新型示踪剂,包括F-SPAL-T-06和F-C05-05,已显示出在检测MSA相关病理方面的前景,最近还显示出在PD和DLB中检测中脑病理的前景。然而,在PD/DLB早期阶段对病理变化的灵敏检测仍然是一个挑战。高分辨率PET技术和结构优化配体的整合可能能够更早、更准确地检测蛋白质聚集体,为临床决策和靶向疾病修饰疗法的开发提供支持。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/7c8f/12468588/e541dcb5834c/cells-14-01418-g003.jpg
https://cdn.ncbi.nlm.nih.gov/pmc/blobs/7c8f/12468588/9f56e9a5fc7b/cells-14-01418-g001.jpg
https://cdn.ncbi.nlm.nih.gov/pmc/blobs/7c8f/12468588/a11c1ce2f256/cells-14-01418-g002.jpg
https://cdn.ncbi.nlm.nih.gov/pmc/blobs/7c8f/12468588/e541dcb5834c/cells-14-01418-g003.jpg
https://cdn.ncbi.nlm.nih.gov/pmc/blobs/7c8f/12468588/9f56e9a5fc7b/cells-14-01418-g001.jpg
https://cdn.ncbi.nlm.nih.gov/pmc/blobs/7c8f/12468588/a11c1ce2f256/cells-14-01418-g002.jpg
https://cdn.ncbi.nlm.nih.gov/pmc/blobs/7c8f/12468588/e541dcb5834c/cells-14-01418-g003.jpg

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本文引用的文献

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Nat Rev Neurol. 2025 Aug 11. doi: 10.1038/s41582-025-01126-2.
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Neuropathological correlations of F-florzolotau PET in a case with pick's disease.18F-氟代花青tau蛋白PET在一例匹克病患者中的神经病理学相关性
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Substantia Nigra Iron Deposition in Lewy Body Disease: A Magnetic Resonance Imaging and Neuropathology Study.
路易体病中的黑质铁沉积:一项磁共振成像与神经病理学研究
Mov Disord. 2025 Jun 23. doi: 10.1002/mds.30265.
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Clinical utility of synuclein skin biopsy in the diagnosis and evaluation of synucleinopathies.α-突触核蛋白皮肤活检在α-突触核蛋白病诊断和评估中的临床应用
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Imaging α-synuclein pathologies in animal models and patients with Parkinson's and related diseases.在帕金森病及相关疾病的动物模型和患者中对α-突触核蛋白病变进行成像。
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