外泌体表面原位生长纳米硒的方法及得到的硒化外泌体

    公开(公告)号:CN114763533B

    公开(公告)日:2024-02-23

    申请号:CN202210539641.9

    申请日:2022-05-17

    Abstract: 本公开涉及一种外泌体表面原位生长纳米硒的方法及得到的硒化外泌体,所述方法包括如下步骤:(1)将外泌体与硒前驱体在溶剂中进行共孵育,然后除去溶剂,得到吸附有硒前驱体的外泌体;(2)吸附有硒前驱体的外泌体与还原剂进行还原反应,得到硒化外泌体。本公开提供的硒化外泌体不但保留了外泌体本身的生物学活性,更因为有原位生长的纳米硒而使外泌体具有纳米硒的功能。(56)对比文件Liang Zhang等.Expulsion of selenium/protein nanoparticles through vesicle-like structures by Saccharomycescerevisiae under microaerophilicenvironment.World Journal of Microbiologyand Biotechnology.2012,第28卷(第12期),3381-3386.Shaoyi Lin等.Novel design of nano-selenium loaded injectable hydrogelcombined with mesenchymal stem cells-derived exosomes improving cardiac repairand nursing care after acute myocardialinfarction.Journal of Drug DeliveryScience and Technology.2023,1-14.Shaigan Naidoo等.Poly-L-Lysine-Lactobionic Acid-Capped SeleniumNanoparticles for Liver-Targeted GeneDelivery.Int J Mol Sci.2022,第23卷(第3期),1-18.李思迪;侯信;亓洪昭;赵瑾;原续波.外泌体:为高效药物投递策略提供天然的内源性纳米载体.化学进展.2016,(Z2),第355页左栏第1段.龚林吉;谢佳妮;朱双;谷战军;赵宇亮.多功能纳米材料在肿瘤放疗增敏中的应用.物理化学学报.2018,(02),34-61.

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