Department of Physiology, Liaoning Provincial Key Laboratory of Cerebral Diseases, Dalian Medical University, Dalian City, Liaoning Province 116044, China.
Department of General Surgery, Subei People's Hospital of Jiangsu Province, Yangzhou City, Jiangsu Province 225000, China.
Neural Plast. 2017;2017:7027380. doi: 10.1155/2017/7027380. Epub 2017 Jul 9.
Exosomes are bilipid layer-enclosed vesicles derived from endosomes and are released from neural cells. They contain a diversity of proteins, mRNAs, and microRNAs (miRNAs) that are delivered to neighboring cells and/or are transported to distant sites. miRNAs released from exosomes appear to be associated with multiple neurodegenerative conditions linking to Alzheimer's disease (AD) which is marked by hyperphosphorylated tau proteins and accumulation of A plaques. Exciting findings reveal that miRNAs released from exosomes modulate the expression and function of amyloid precursor proteins (APP) and tau proteins. These open up the possibility that dysfunctional exosomal miRNAs may influence AD progression. In addition, it has been confirmed that the interaction between miRNAs released by exosomes and Toll-like receptors (TLR) initiates inflammation. In exosome support-deprived neurons, exosomal miRNAs may regulate neuroplasticity to relieve neurological damage. In this review, we summarize the literature on the function of exosomal miRNAs in AD pathology, the potential of these miRNAs as diagnostic biomarkers in AD, and the use of exosomes in the delivery of miRNAs which may lead to major advances in the field of macromolecular drug delivery.
外泌体是源自内体的双层脂囊泡,由神经细胞释放。它们包含多种蛋白质、mRNA 和 microRNAs(miRNAs),这些物质被递送到邻近细胞和/或被运送到远处的部位。从外泌体释放的 miRNAs 似乎与多种神经退行性疾病有关,这些疾病与阿尔茨海默病(AD)有关,AD 的特征是过度磷酸化的 tau 蛋白和 A 斑块的积累。令人兴奋的发现表明,从外泌体释放的 miRNAs 调节淀粉样前体蛋白(APP)和 tau 蛋白的表达和功能。这为功能失调的外泌体 miRNAs 可能影响 AD 进展打开了可能性。此外,已经证实外泌体释放的 miRNAs 与 Toll 样受体(TLR)之间的相互作用会引发炎症。在缺乏外泌体支持的神经元中,外泌体 miRNAs 可能调节神经可塑性以减轻神经损伤。在这篇综述中,我们总结了外泌体 miRNAs 在 AD 病理学中的功能、这些 miRNAs 作为 AD 诊断生物标志物的潜力,以及外泌体在 miRNA 传递中的应用,这可能会在大分子药物输送领域取得重大进展。