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Review of the Isolation, Characterization, Biological Function, and Multifarious Therapeutic Approaches of Exosomes

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TLDR
The history, biogenesis, release, isolation, characterization, and biological functions of exosomes, as well as the factors influencing their biogenesis and their technical and biological challenges are discussed.
Abstract
Exosomes are extracellular vesicles that contain a specific composition of proteins, lipids, RNA, and DNA. They are derived from endocytic membranes and can transfer signals to recipient cells, thus mediating a novel mechanism of cell-to-cell communication. They are also thought to be involved in cellular waste disposal. Exosomes play significant roles in various biological functions, including the transfer of biomolecules such as RNA, proteins, enzymes, and lipids and the regulation of numerous physiological and pathological processes in various diseases. Because of these properties, they are considered to be promising biomarkers for the diagnosis and prognosis of various diseases and may contribute to the development of minimally invasive diagnostics and next generation therapies. The biocompatible nature of exosomes could enhance the stability and efficacy of imaging probes and therapeutics. Due to their potential use in clinical applications, exosomes have attracted much research attention on their roles in health and disease. To explore the use of exosomes in the biomedical arena, it is essential that the basic molecular mechanisms behind the transport and function of these vesicles are well-understood. Herein, we discuss the history, biogenesis, release, isolation, characterization, and biological functions of exosomes, as well as the factors influencing their biogenesis and their technical and biological challenges. We conclude this review with a discussion on the future perspectives of exosomes.

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Citations
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Journal ArticleDOI

The isolation and characterization of exosomes

Bow J. Tauro
- 01 Jan 2013 - 
TL;DR: This book discusses exosome function in the tumor microenvironment and cancer progression, and the role of exosomes in this environment and its role in cancer progression.
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Prospects and challenges of extracellular vesicle-based drug delivery system: considering cell source

TL;DR: This review summarized the current knowledge on the application of EVs as DDS from the perspective of different cell origin and weighted the advantages and bottlenecks of EV-based DDS.
Journal ArticleDOI

Progress in Microfluidics-Based Exosome Separation and Detection Technologies for Diagnostic Applications.

TL;DR: An overview of conventional and microfluidics-based techniques for exosome separation and detection is presented and the advantages and drawbacks of these techniques are compared.
Journal ArticleDOI

Extracellular Vesicles Derived From Mesenchymal Stem Cells (MSC) in Regenerative Medicine: Applications in Skin Wound Healing.

TL;DR: It is shown that the application of MSC-derived EV for the treatment of CSU has positive effects, including accelerating healing and decreasing scar formation, and opens the door for the design of new highly effective therapeutic strategies.
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Extracellular vesicles: A bright star of nanomedicine.

TL;DR: The superior biological functions and powerful therapeutic potential of EVs are clarified, particularly with regard to new designs based on EVs and their utilization in a new generation of nanomedicine diagnosis and treatment platforms.
References
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Journal ArticleDOI

Apoptosis: a basic biological phenomenon with wide-ranging implications in tissue kinetics.

TL;DR: Apoptosis seems to be involved in cell turnover in many healthy adult tissues and is responsible for focal elimination of cells during normal embryonic development, and participates in at least some types of therapeutically induced tumour regression.
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Atomic force microscope

TL;DR: The atomic force microscope as mentioned in this paper is a combination of the principles of the scanning tunneling microscope and the stylus profilometer, which was proposed as a method to measure forces as small as 10-18 N. As one application for this concept, they introduce a new type of microscope capable of investigating surfaces of insulators on an atomic scale.
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Exosome-mediated transfer of mRNAs and microRNAs is a novel mechanism of genetic exchange between cells

TL;DR: It is shown that exosomes contain both mRNA and microRNA, which can be delivered to another cell, and can be functional in this new location, and it is proposed that this RNA is called “exosomal shuttle RNA” (esRNA).
Journal ArticleDOI

Immunity, Inflammation, and Cancer

TL;DR: The principal mechanisms that govern the effects of inflammation and immunity on tumor development are outlined and attractive new targets for cancer therapy and prevention are discussed.
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