Exosome Theranostics: Biology and Translational Medicine
Тераностика экзосом: биология и трансляционная медицина
2017-11-20
SCID: 54.1/629yf5ju
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biomarkersdrug carriersexosome theranosticsextracellular nanovesiclestranslational medicine
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Abstract (AI)
Exosomes are common membrane-bound nanovesicles that contain diverse biomolecules, such as lipids, proteins, and nucleic acids. Exosomes are derived from cells through exocytosis, are ingested by target cells, and can transfer biological signals between local or distant cells. Exosome secretion is a constitutive phenomenon that is involved in both physiological and pathological processes and determines both the exosomal surface molecules and the contents. Hence, we can exploit exosomes as biomarkers, vaccines and drug carriers and modify them rationally for therapeutic interventions. However, it is still a challenge to identify, isolate and quantify exosomes accurately, efficiently and selectively. Further studies on exosomes will explore their potential in translational medicine and provide new avenues for the creation of effective clinical diagnostics and therapeutic strategies; the use of exosomes in these applications can be called exosome theranostics. This review describes the fundamental processes of exosome formation and uptake. In addition, the physiological and pathological roles of exosomes in biology are also illustrated with a focus on how exosomes can be exploited or engineered as powerful tools in translational medicine.
Key Findings
1
Accurate, efficient, and selective identification, isolation, and quantification of exosomes remain major challenges for clinical translation.
2
Exosome secretion contributes to physiological and pathological processes and influences the vesicles’ surface molecules and molecular cargo.
3
Exosome theranostics may support new diagnostic and therapeutic strategies by exploiting or engineering exosomes for translational medicine.
4
Exosomes are membrane-bound nanovesicles carrying lipids, proteins, and nucleic acids that transfer biological signals between local and distant cells.
5
Exosomes have potential applications as biomarkers, vaccines, and drug carriers, with rational engineering enabling therapeutic interventions.
Research Object
Exosomes
Research Subject
Exosome biology and translational-medicine applications, including their formation, uptake, physiological and pathological roles, and use as biomarkers, vaccines, drug carriers, and therapeutic tools
Publication Details
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2017-11-20
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