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Engineered Exosomes: A Promising Drug Delivery Strategy for Brain Diseases

期刊

CURRENT MEDICINAL CHEMISTRY
卷 29, 期 17, 页码 3111-3124

出版社

BENTHAM SCIENCE PUBL LTD
DOI: 10.2174/0929867328666210902142015

关键词

Exosome; brain disease; drug delivery; donor cells engineering; exosomes engineering; artificial exosome mimics

资金

  1. China Postdoctoral Science Foundation [2019M652857]
  2. Research project of the Science and Technology Department of Sichuan province [2021YJ0217]
  3. Research Project of Chengdu Medical College [CYZ17-27]
  4. Research Project of Sichuan Applied Psychology Research Center of Chengdu Medical College [CSXL-202A13]

向作者/读者索取更多资源

Exosomes are natural membrane vesicles released from cells that play an important role in cell-cell communication. They have been found to have various roles in brain diseases and have received attention as therapeutic drug carriers for brain drug delivery. Engineered exosomes have shown potential in improving drug uptake efficiency and efficacy. However, challenges still exist in developing exosomes as a drug delivery strategy for brain diseases. Further research in this area is important for its development.
Exosomes are a heterogeneous group of nano-sized natural membrane vesicles released from various cells and exist in body fluids. Different from the previous understanding of the function of exosomes as garbage bins, exosomes act as carriers with many kinds of bioactive molecules (e.g., proteins, lipids, and nucleic acids) to play an important role in cell-cell communication. Growing evidence in recent years has suggested that exosomes also play some roles in the pathogenesis, diagnosis, and treatment modalities of some brain diseases, including ischemic stroke, Alzheimer's disease, Parkinson's disease, multiple sclerosis, and brain cancers. Exosomes as therapeutic drug carriers for brain drug delivery have received extensive attention as well as exosomes can overcome the blood-brain barrier (BBB). However, the low targeting ability and size-dependent cellular uptake of native exosomes could profoundly affect the delivery performance of exosomes. Recent studies have indicated that engineered exosomes can increase the drug uptake efficiency and the subsequent drug efficacy. In the present paper, we will briefly introduce the engineering methods and applications of engineered exosomes in the treatment of brain diseases, and then focus on discussing the advantages and challenges of exosome-based drug delivery platforms to further enrich and boost the development of exosomes as a promising drug delivery strategy for brain diseases.

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