Aresta Antonella Maria, De Vietro Nicoletta, Zambonin Carlo
Department of Biosciences, Biotechnology and Environment, University of Bari "Aldo Moro", Via E. Orabona 4, 70126 Bari, Italy.
Int J Mol Sci. 2024 Apr 19;25(8):4490. doi: 10.3390/ijms25084490.
The extracellular vesicles (EVs) released by cells play a crucial role in intercellular communications and interactions. The direct shedding of EVs from the plasma membrane represents a fundamental pathway for the transfer of properties and information between cells. These vesicles are classified based on their origin, biogenesis, size, content, surface markers, and functional features, encompassing a variety of bioactive molecules that reflect the physiological state and cell type of origin. Such molecules include lipids, nucleic acids, and proteins. Research efforts aimed at comprehending EVs, including the development of strategies for their isolation, purification, and characterization, have led to the discovery of new biomarkers. These biomarkers are proving invaluable for diagnosing diseases, monitoring disease progression, understanding treatment responses, especially in oncology, and addressing metabolic, neurological, infectious disorders, as well as advancing vaccine development. Matrix-Assisted Laser Desorption Ionization (MALDI)/Mass Spectrometry (MS) stands out as a leading tool for the analysis and characterization of EVs and their cargo. This technique offers inherent advantages such as a high throughput, minimal sample consumption, rapid and cost-effective analysis, and user-friendly operation. This review is mainly focused on the primary applications of MALDI-time-of-flight (TOF)/MS in the analysis and characterization of extracellular vesicles associated with non-cancerous diseases and pathogens that infect humans, animals, and plants.
细胞释放的细胞外囊泡(EVs)在细胞间通讯和相互作用中起着至关重要的作用。EVs从质膜直接脱落是细胞间传递特性和信息的基本途径。这些囊泡根据其起源、生物发生、大小、内容物、表面标志物和功能特征进行分类,包含反映起源生理状态和细胞类型的多种生物活性分子。此类分子包括脂质、核酸和蛋白质。旨在理解EVs的研究工作,包括其分离、纯化和表征策略的开发,已促成了新生物标志物的发现。这些生物标志物在疾病诊断、监测疾病进展、理解治疗反应(尤其是在肿瘤学领域)以及应对代谢、神经、感染性疾病方面正证明具有不可估量的价值,同时也推动了疫苗开发。基质辅助激光解吸电离(MALDI)/质谱(MS)是分析和表征EVs及其所载物质的领先工具。该技术具有诸如高通量、样品消耗少、分析快速且经济高效以及操作简便等固有优势。本综述主要聚焦于MALDI-飞行时间(TOF)/MS在分析和表征与非癌性疾病以及感染人类、动物和植物的病原体相关的细胞外囊泡方面的主要应用。