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轻度认知障碍预后评估方法研究进展OA

Progress on prognostic assessment methods for mild cognitive impairment

中文摘要英文摘要

轻度认知障碍(MCI)作为痴呆的关键前驱阶段,其预后评估的精准性对于延缓疾病转化具有重要意义.MCI具有高度异质性,单一指标在预后预测中效能有限.MCI的不同临床亚型如遗忘型、非遗忘型及主观认知能力下降在病理机制及转归上存在本质差异,是预后评估分层的基础.睡眠时长异常、肢体功能减退及精神症状(抑郁、焦虑、淡漠)在不同程度上提示认知衰退风险,可作为MCI患者预后评估的临床观察指标.神经心理学评估量表和工具性日常生活活动能力评估均可用于反映患者的认知功能损害特征,但评估结果受教育和文化背景等因素影响.脑脊液β淀粉样蛋白(Aβ)42、磷酸化τ蛋白(P-tau)181、总τ蛋白等核心指标与AD核心病理高度相关,可准确预测MCI患者预后;血浆标志物P-tau217、神经丝轻链、神经胶质细胞原纤维酸性蛋白(GFAP)及Aβ42/Aβ40比值等适合筛查随访,脑脊液与血浆标志物联合检测可提升预测效能;而血清标志物克老素和胰岛素样生长因子-1等尚缺乏特异性,其独立预测价值有待进一步验证.多模态神经影像学通过结构性磁共振成像(MRI)、功能性MRI揭示的神经功能网络代偿和失代偿水平紊乱以及正电子发射体层摄影(PET)显示的分子病理学改变(Aβ沉积、τ蛋白聚集),可串联形成从分子事件到临床表型的完整证据链.智能预测模型从基础风险分层、静态整合预测到纵向动态预测,可显著提升多模态数据的融合预测效能.因此,MCI患者预后评估正在从单一模态转向阶梯式多模态:初级筛查采用"临床信息(含MCI亚型特征)+核心神经心理学评估(侧重蒙特利尔认知功能评估延迟回忆和执行功能分测验)+血液生物标志物检测(血浆P-tau217和GFAP)"组合;精准诊断阶段增加结构MRI检测以评估海马萎缩;疑难病例及科研场景可进一步引入脑脊液检测、Aβ-PET和τ-PET.未来研究需着力构建动态监测框架,深化可干预风险因素的机制探索,以推动MCI个体化预后管理及早期干预策略的优化.

Mild cognitive impairment(MCI),a key prodromal stage of dementia,requires precise prognostic assessment to delay disease progression.Given the high heterogeneity of MCI,any single indicator has limited predictive efficacy.Different clinical subtypes of MCI,such as amnestic MCI,non-amnestic MCI,and subjective cognitive decline,exhibit fundamental differences in pathological mechanisms and outcomes,forming the basis for stratified prognostic assessment.Abnormal sleep duration,physical functional decline,and psychiatric symptoms(depression,anxiety,apathy)are indicative of cognitive decline risk to varying degrees and can serve as clinical observational indicators for evaluating MCI prognosis.Neuropsychological assessment scales and instrumental activities of daily living assessments can characterize the features of cognitive impairment,but their results are susceptible to educational and cultural influences.Core cerebrospinal fluid(CSF)biomarkers,including amyloid β-protein(Aβ)42,phosphorylated tau protein(P-tau)181,and total tau protein(T-tau),are highly correlated with the core pathology of Alzheimer's disease and can accurately predict MCI prognosis.Plasma biomarkers such as P-tau217,neurofilament light chain,glial fibrillary acidic protein(GFAP),and the Aβ42/Aβ40 ratio are suitable for screening and follow-up;combining CSF and plasma biomarkers enhances predictive performance.In contrast,serum markers like Klotho and insulin-like growth factor-1 lack specificity,and their independent predictive value requires further validation.Multimodal neuroimaging,including structural magnetic resonance imaging(MRI),functional MRI(revealing neural network compensation and decompensation),and positron emission tomography(PET)showing molecular pathological changes(Aβ deposition,tau protein aggregation),can form a complete chain of evidence linking molecular events to clinical phenotypes.Intelligent prediction models,ranging from basic risk stratification and static integrated models to longitudinal dynamic prediction,significantly improve the fusion predictive performance of multimodal data.Consequently,the prognostic assessment of MCI is moving from a single modality toward a stepwise integrated approach:primary screening adopts the combination of clinical information(including MCI subtype characteristics)+core neuropsychological assessment(focusing on delayed recall and executive function subtests of the Montreal Cognitive Assessment)+blood biomarkers(plasma P-tau217 and GFAP testing);the precise diagnostic phase adds structural MRI to assess hippocampal atrophy;for difficult cases and research settings,CSF testing,Aβ-PET,and τ-PET are further introduced.Future research should focus on constructing dynamic monitoring frameworks and deepening mechanistic exploration of modifiable risk factors,thereby advancing individualized prognostic management and early intervention strategies for MCI.

林菁菁;于顾然

南京中医药大学附属医院神经内科,江苏 南京 210029南京中医药大学附属医院神经内科,江苏 南京 210029

医药卫生

轻度认知障碍预后评估临床行为学神经心理学工具性日常生活活动生物标志物综述

Mild cognitive impairmentPrognosisAssessmentClinical behavioristicsNeuropsychologyInstrumental activity of daily livingBiomarkerReview

《浙江大学学报(医学版)》 2026 (5)

449-464,16

国家重点研发计划(2022YFC3501403)江苏省院士工作站(BM2024101)This study was supported by National Key R&D Program of China(2022YFC3501403)and Jiangsu Provincial Academician Workstation(BM2024101)

10.3724/zdxbyxb-2025-0669

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