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循环微RNA是阿尔茨海默病的外周生物标志物吗?

Are circulating microRNAs peripheral biomarkers for Alzheimer's disease?

作者信息

Kumar Subodh, Reddy P Hemachandra

机构信息

Garrison Institute on Aging, Texas Tech University Health Sciences Center, 3601 4th Street, MS 9424, Lubbock, TX 79430, United States.

Garrison Institute on Aging, Texas Tech University Health Sciences Center, 3601 4th Street, MS 9424, Lubbock, TX 79430, United States; Cell Biology & Biochemistry, Texas Tech University Health Sciences Center, 3601 4th Street, MS 9424, Lubbock, TX 79430, United States; Neuroscience & Pharmacology, Texas Tech University Health Sciences Center, 3601 4th Street, MS 9424, Lubbock, TX 79430, United States; Neurology Texas Tech University Health Sciences Center, 3601 4th Street, MS 9424, Lubbock, TX 79430, United States; Speech, Language and Hearing Sciences Departments, Texas Tech University Health Sciences Center, 3601 4th Street, MS 9424, Lubbock, TX 79430, United States; Garrison Institute on Aging, South West Campus, Texas Tech University Health Sciences Center, 6630 S. Quaker Ste. E, MS 7495, Lubbock, TX 79413, United States.

出版信息

Biochim Biophys Acta. 2016 Sep;1862(9):1617-27. doi: 10.1016/j.bbadis.2016.06.001. Epub 2016 Jun 2.

Abstract

Alzheimer's disease (AD) is a progressive neurodegenerative disease characterized by memory loss, multiple cognitive abnormalities and intellectual impairments. Currently, there are no drugs or agents that can delay and/or prevent the progression of disease in elderly individuals, and there are no peripheral biomarkers that can detect AD early in its pathogenesis. Research has focused on identifying biomarkers for AD so that treatment can be begun as soon as possible in order to restrict or prevent intellectual impairments, memory loss, and other cognitive abnormalities that are associated with the disease. One such potential biomarker is microRNAs that are found in circulatory biofluids, such as blood and blood components, serum and plasma. Blood and blood components are primary sources where miRNAs are released in either cell-free form and then bind to protein components, or are in an encapsulated form with microvesicle particles. Exosomal miRNAs are known to be stable in biofluids and can be detected by high throughput techniques, like microarray and RNA sequencing. In AD brain, enriched miRNAs encapsulated with exosomes crosses the blood brain barrier and secreted in the CSF and blood circulations. This review summarizes recent studies that have identified miRNAs in the blood, serum, plasma, exosomes, cerebral spinal fluids, and extracellular fluids as potential biomarkers of AD. Recent research has revealed only six miRNAs - miR-9, miR-125b, miR-146a, miR-181c, let-7g-5p, and miR-191-5p - that were reported by multiple investigators. Some studies analyzed the diagnostic potential of these six miRNAs through receiver operating curve analysis which indicates the significant area-under-curve values in different biofluid samples. miR-191-5p was found to have the maximum area-under-curve value (0.95) only in plasma and serum samples while smaller area-under-curve values were found for miR-125, miR-181c, miR-191-5p, miR-146a, and miR-9. This article shortlisted the promising miRNA candidates and discussed their diagnostic properties and cellular functions in order to search for potential biomarker for AD.

摘要

阿尔茨海默病(AD)是一种进行性神经退行性疾病,其特征为记忆力丧失、多种认知异常和智力损害。目前,尚无药物或制剂能够延缓和/或预防老年个体疾病的进展,也没有外周生物标志物能够在AD发病早期进行检测。研究聚焦于识别AD的生物标志物,以便尽早开始治疗,从而限制或预防与该疾病相关的智力损害、记忆力丧失及其他认知异常。一种这样的潜在生物标志物是在循环生物流体(如血液及其成分、血清和血浆)中发现的微小RNA(microRNAs)。血液及其成分是miRNAs的主要来源,它们以无细胞形式释放,然后与蛋白质成分结合,或以与微泡颗粒封装的形式存在。已知外泌体miRNAs在生物流体中稳定,并且可以通过高通量技术(如微阵列和RNA测序)进行检测。在AD大脑中,富含外泌体封装的miRNAs穿过血脑屏障,并分泌到脑脊液和血液循环中。本综述总结了最近的研究,这些研究已将血液、血清、血浆、外泌体、脑脊液和细胞外液中的miRNAs鉴定为AD的潜在生物标志物。最近的研究仅揭示了六种miRNAs——miR-9、miR-125b、miR-146a、miR-181c、let-7g-5p和miR-191-5p——多位研究者都报告过它们。一些研究通过受试者工作特征曲线分析来分析这六种miRNAs的诊断潜力,该分析表明在不同生物流体样本中具有显著的曲线下面积值。发现miR-191-5p仅在血浆和血清样本中具有最大曲线下面积值(0.95),而miR-125、miR-181c、miR-191-5p、miR-146a和miR-9的曲线下面积值较小。本文筛选出了有前景的miRNA候选物,并讨论了它们的诊断特性和细胞功能,以便寻找AD的潜在生物标志物。

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