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Therapeutic potential and pharmacological significance of extracellular vesicles derived from traditional medicinal plants

Affiliation
State Key Laboratory of Southwestern Chinese Medicine Resources ,School of Basic Medical Sciences ,Chengdu University of Traditional Chinese Medicine ,Chengdu ,China
Wu, Peijie;
Affiliation
State Key Laboratory of Southwestern Chinese Medicine Resources ,School of Basic Medical Sciences ,Chengdu University of Traditional Chinese Medicine ,Chengdu ,China
Wu, Wenjun;
Affiliation
State Key Laboratory of Southwestern Chinese Medicine Resources ,School of Basic Medical Sciences ,Chengdu University of Traditional Chinese Medicine ,Chengdu ,China
Zhang, Shu;
Affiliation
State Key Laboratory of Southwestern Chinese Medicine Resources ,School of Basic Medical Sciences ,Chengdu University of Traditional Chinese Medicine ,Chengdu ,China
Han, Jun;
Affiliation
State Key Laboratory of Southwestern Chinese Medicine Resources ,School of Basic Medical Sciences ,Chengdu University of Traditional Chinese Medicine ,Chengdu ,China
Liu, Chao;
Affiliation
State Key Laboratory of Southwestern Chinese Medicine Resources ,School of Basic Medical Sciences ,Chengdu University of Traditional Chinese Medicine ,Chengdu ,China
Yu, Han;
Affiliation
State Key Laboratory of Southwestern Chinese Medicine Resources ,School of Basic Medical Sciences ,Chengdu University of Traditional Chinese Medicine ,Chengdu ,China
Chen, Xiping;
Affiliation
State Key Laboratory of Southwestern Chinese Medicine Resources ,School of Basic Medical Sciences ,Chengdu University of Traditional Chinese Medicine ,Chengdu ,China
Chen, Xiaofeng

Medicinal plants are the primary sources for the discovery of novel medicines and the basis of ethnopharmacological research. While existing studies mainly focus on the chemical compounds, there is little research about the functions of other contents in medicinal plants. Extracellular vesicles (EVs) are functionally active, nanoscale, membrane-bound vesicles secreted by almost all eukaryotic cells. Intriguingly, plant-derived extracellular vesicles (PDEVs) also have been implicated to play an important role in therapeutic application. PDEVs were reported to have physical and chemical properties similar to mammalian EVs, which are rich in lipids, proteins, nucleic acids, and pharmacologically active compounds. Besides these properties, PDEVs also exhibit unique advantages, especially intrinsic bioactivity, high stability, and easy absorption. PDEVs were found to be transferred into recipient cells and significantly affect their biological process involved in many diseases, such as inflammation and tumors. PDEVs also could offer unique morphological and compositional characteristics as natural nanocarriers by innately shuttling bioactive lipids, RNA, proteins, and other pharmacologically active substances. In addition, PDEVs could effectively encapsulate hydrophobic and hydrophilic chemicals, remain stable, and cross stringent biological barriers. Thus, this study focuses on the pharmacological action and mechanisms of PDEVs in therapeutic applications. We also systemically deal with facets of PDEVs, ranging from their isolation to composition, biological functions, and biotherapeutic roles. Efforts are also made to elucidate recent advances in re-engineering PDEVs applied as stable, effective, and non-immunogenic therapeutic applications to meet the ever-stringent demands. Considering its unique advantages, these studies not only provide relevant scientific evidence on therapeutic applications but could also replenish and inherit precious cultural heritage.

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License Holder: Copyright © 2023 Wu, Wu, Zhang, Han, Liu, Yu, Chen and Chen.

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