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The exosome journey: from biogenesis to uptake and intracellular signalling

期刊

CELL COMMUNICATION AND SIGNALING
卷 19, 期 1, 页码 -

出版社

BMC
DOI: 10.1186/s12964-021-00730-1

关键词

Exosomes; Extracellular vesicles; Intercellular communication; Targeting; Multivesicular bodies; Tetraspanins; Lipid rafts; Rab GTPases; Endocytosis

资金

  1. United Kingdom Research Council Innovate UK Biomedical Catalyst award [14720]
  2. NIHR Great Ormond Street Hospital Biomedical Research Centre
  3. MRC Clinician Scientist Fellowship [MR/T008024/1]
  4. Nutricia Metabolic Research Grant, London Advanced Therapy/Confidence in Collaboration award [2CiC017]
  5. MRC [MR/T008024/1] Funding Source: UKRI

向作者/读者索取更多资源

Exosomes have vast potential in clinical applications, and understanding their biology is crucial. The processes of exosome biogenesis, transport, and uptake involve numerous influencing factors.
The use of exosomes in clinical settings is progressively becoming a reality, as clinical trials testing exosomes for diagnostic and therapeutic applications are generating remarkable interest from the scientific community and investors. Exosomes are small extracellular vesicles secreted by all cell types playing intercellular communication roles in health and disease by transferring cellular cargoes such as functional proteins, metabolites and nucleic acids to recipient cells. An in-depth understanding of exosome biology is therefore essential to ensure clinical development of exosome based investigational therapeutic products. Here we summarise the most up-to-date knowkedge about the complex biological journey of exosomes from biogenesis and secretion, transport and uptake to their intracellular signalling. We delineate the major pathways and molecular players that influence each step of exosome physiology, highlighting the routes of interest, which will be of benefit to exosome manipulation and engineering. We highlight the main controversies in the field of exosome research: their adequate definition, characterisation and biogenesis at plasma membrane. We also delineate the most common identified pitfalls affecting exosome research and development. Unravelling exosome physiology is key to their ultimate progression towards clinical applications.

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