Extracellular vesicles as a next-generation drug delivery platform

被引:0
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作者
Inge Katrin Herrmann
Matthew John Andrew Wood
Gregor Fuhrmann
机构
[1] ETH Zurich,Nanoparticle Systems Engineering Laboratory, Institute of Energy and Process Engineering, Department of Mechanical and Process Engineering
[2] Swiss Federal Laboratories for Materials Science and Technology (Empa),Particles–Biology Interactions, Department of Materials Meet Life
[3] University of Oxford,Department of Paediatrics and Oxford Harrington Rare Disease Centre
[4] Helmholtz Institute for Pharmaceutical Research Saarland (HIPS),Helmholtz Centre for Infection Research (HZI), Biogenic Nanotherapeutics Group (BION)
[5] Saarland University,Department of Pharmacy
[6] Friedrich-Alexander-University Erlangen Nuremberg,Chair for Pharmaceutical Biology, Department of Biology
来源
Nature Nanotechnology | 2021年 / 16卷
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摘要
Extracellular-vesicle-based cell-to-cell communication is conserved across all kingdoms of life. There is compelling evidence that extracellular vesicles are involved in major (patho)physiological processes, including cellular homoeostasis, infection propagation, cancer development and cardiovascular diseases. Various studies suggest that extracellular vesicles have several advantages over conventional synthetic carriers, opening new frontiers for modern drug delivery. Despite extensive research, clinical translation of extracellular-vesicle-based therapies remains challenging. Here, we discuss the uniqueness of extracellular vesicles along with critical design and development steps required to utilize their full potential as drug carriers, including loading methods, in-depth characterization and large-scale manufacturing. We compare the prospects of extracellular vesicles with those of the well established liposomes and provide guidelines to direct the process of developing vesicle-based drug delivery systems.
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页码:748 / 759
页数:11
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