Cancer-exocytosed exosomes loaded with bio-assembled AgNCs as smart drug carriers for targeted chemotherapy

微泡 细胞毒性 癌细胞 纳米团簇 化学 药物输送 靶向给药 药品 生物相容性材料 癌症 癌症研究 毒品携带者 U87型 纳米技术 药理学 细胞 材料科学 医学 生物化学 体外 生物医学工程 小RNA 内科学 基因
作者
Tanziela Tanziela,Sana Shaikh,Fawad Ur Rehman,Farouk Semcheddine,Hui Jiang,Zuhong Lu,Xuemei Wang
出处
期刊:Chemical Engineering Journal [Elsevier]
卷期号:440: 135980-135980 被引量:27
标识
DOI:10.1016/j.cej.2022.135980
摘要

Drug resistance remains one of the major hurdles to the effective cancer therapy. Recently emerged field of nanotechnology holds great promises for effective and target specific conveyance of therapeutic cargo to malignant sites. Exosomes have been recently come into focus as drug carriers as they are nano-sized, biocompatible and can cross blood brain barriers (BBB). Exosomes exocytose from almost every type of cells and can be separated from body fluids or cell culture medium. Herein, we have developed the new bioresponsive self-assembly of drug-delivery platform through the in situ biosynthesized exosomes ([email protected]U87), isolated by ultracentrifugation from the cell culture medium of glioblastoma cells (U87) after incubation with [Ag (GSH)]+ and DOX separately and combined. These engineered exosomes are highly cancer targeting and biocompatible, sphere-shaped with the average size of 30–120 nm, and can be used as early cancer diagnosis. The [email protected]U87 showed higher cellular accumulation as compared to [email protected]U87, suggesting the efficiency of the bio-responsive self-assembled silver nanoclusters (AgNCs) as smart cancer targeting agents. Moreover, the as-prepared [email protected]U87 cause cytotoxicity involved reactive oxygen species (ROS) damage in cancer cells and have no activity on healthy cells. In addition, the higher efficacy of the intelligent drug release under acidic conditions was clearly observed. This raises the possibility to provide the smart drug delivery platform through the bio-responsive self-assembled exosomes loaded with biocompatible fluorescent nanoclusters including AgNCs exocytosed from tumor cells for cancer diagnosis and targeted chemotherapy.
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