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- W2888040284 endingPage "1508271" @default.
- W2888040284 startingPage "1508271" @default.
- W2888040284 abstract "Extracellular vesicles (EVs), which can be found in almost all body fluids, consist of a lipid bilayer enclosing proteins and nucleic acids from their cells of origin. EVs can transport their cargo to target cells and have therefore emerged as key players in intercellular communication. Their potential as either diagnostic and prognostic biomarkers or therapeutic drug delivery systems (DDSs) has generated considerable interest in recent years. However, conventional methods used to study EVs still have significant limitations including the time-consuming and low throughput techniques required, while at the same time the demand for better research tools is getting stronger and stronger. In the past few years, microfluidics-based technologies have gradually emerged and have come to play an essential role in the isolation, detection and analysis of EVs. Such technologies have several advantages, including low cost, low sample volumes, high throughput and precision. This review summarizes recent advances in microfluidics-based technologies, compares conventional and microfluidics-based technologies, and includes a brief survey of recent progress towards integrated on-a-chip systems. In addition, this review also discusses the potential clinical applications of on-a-chip systems, including both liquid biopsies for personalized medicine and DDS devices for precision medicine, and then anticipates the possible future participation of cloud-based portable disease diagnosis and monitoring systems, possibly with the participation of artificial intelligence (AI)." @default.
- W2888040284 created "2018-08-31" @default.
- W2888040284 creator A5004405695 @default.
- W2888040284 creator A5055473459 @default.
- W2888040284 creator A5075122806 @default.
- W2888040284 date "2018-08-20" @default.
- W2888040284 modified "2023-10-17" @default.
- W2888040284 title "Microfluidics-based on-a-chip systems for isolating and analysing extracellular vesicles" @default.
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