| Literature DB >> 31531916 |
Phuong H L Tran1, Dongxi Xiang2, Thao T D Tran3,4, Wang Yin1, Yumei Zhang1, Lingxue Kong5, Kuisheng Chen6, Miaomiao Sun6, Yong Li7, Yingchun Hou8, Yimin Zhu9, Wei Duan1,10,11.
Abstract
Targeted exosomal delivery systems for precision nanomedicine attract wide interest across areas of molecular cell biology, pharmaceutical sciences, and nanoengineering. Exosomes are naturally derived 50-150 nm nanovesicles that play important roles in cell-to-cell and/or cell-to-tissue communications and cross-species communication. Exosomes are also a promising class of novel drug delivery vehicles owing to their ability to shield their payload from chemical and enzymatic degradations as well as to evade recognition by and subsequent removal by the immune system. Combined with a new class of affinity ligands known as aptamers or chemical antibodies, molecularly targeted exosomes are poised to become the next generation of smartly engineered nanovesicles for precision medicine. Here, recent advances in targeted exosomal delivery systems engineered by aptamer for future strategies to promote human health using this class of human-derived nanovesicles are summarized.Entities:
Keywords: aptamers; exosomes; nanoengineering; precision therapeutics; targeting ligands
Mesh:
Year: 2019 PMID: 31531916 DOI: 10.1002/adma.201904040
Source DB: PubMed Journal: Adv Mater ISSN: 0935-9648 Impact factor: 30.849