CNR NANOTEC Institute of Nanotechnology, via Monteroni, 73100 Lecce, Italy.
Institute of Experimental Neurology, Division of Neuroscience, San Raffaele Scientific Institute, 20132 Milan, Italy.
Sensors (Basel). 2018 Sep 20;18(10):3175. doi: 10.3390/s18103175.
Interest in extracellular vesicles and in particular microvesicles and exosomes, which are constitutively produced by cells, is on the rise for their huge potential as biomarkers in a high number of disorders and pathologies as they are considered as carriers of information among cells, as well as being responsible for the spreading of diseases. Current methods of analysis of microvesicles and exosomes do not fulfill the requirements for their in-depth investigation and the complete exploitation of their diagnostic and prognostic value. Lab-on-chip methods have the potential and capabilities to bridge this gap and the technology is mature enough to provide all the necessary steps for a completely automated analysis of extracellular vesicles in body fluids. In this paper we provide an overview of the biological role of extracellular vesicles, standard biochemical methods of analysis and their limits, and a survey of lab-on-chip methods that are able to meet the needs of a deeper exploitation of these biological entities to drive their use in common clinical practice.
人们对细胞自然产生的细胞外囊泡,尤其是微囊泡和外泌体的兴趣日益浓厚,因为它们作为生物标志物在许多疾病和病理状态中具有巨大的潜力,因为它们被认为是细胞间信息的载体,并且还负责疾病的传播。目前分析微囊泡和外泌体的方法不能满足对它们进行深入研究和充分挖掘其诊断和预后价值的要求。芯片实验室方法有潜力和能力来弥补这一差距,并且该技术已经足够成熟,可以为体液中外泌体的完全自动化分析提供所有必要的步骤。在本文中,我们概述了细胞外囊泡的生物学作用、标准的生化分析方法及其局限性,以及能够满足更深入开发这些生物实体的需求的芯片实验室方法的调查,以推动它们在常规临床实践中的应用。