微泡
伏立诺他
阿霉素
组蛋白脱乙酰基酶
癌症研究
组蛋白脱乙酰酶抑制剂
肺癌
药理学
癌细胞
全身给药
癌症
治疗指标
医学
化学
化疗
生物
药品
病理
体内
内科学
组蛋白
小RNA
生物化学
生物技术
基因
作者
Yinshan Lin,Songpei Li,Zekuan Xiao,Sheng Chen,Langyu Yang,Qingsheng Peng,Huan Li,Jijun Fu,Xiyong Yu,Lingmin Zhang
标识
DOI:10.1016/j.phrs.2021.105787
摘要
We adopted a novel strategy by combining histone deacetylase (HDAC) inhibitors with traditional chemotherapeutics to treat solid tumors. However, chemotherapeutics often have a narrow therapeutic index and need multiple administrations with undesired side effects that lead to the intolerance. To reduce the non-specificity of chemotherapeutics, targeted therapy was introduced to restrict such agents in the tumor with minimum effects on other tissues. We developed bioinspired artificial exosomes (AE), which enabled to deliver chemotherapeutics to the tumors effectively after systemic administration. AE were produced by incorporating membrane proteins from cancer cells into phospholipid liposomes that mimicked the plasma membrane. The synthesized AE were used for the delivery of broad-spectrum chemotherapeutic doxorubicin (DOX) and vorinostat (SAHA), an epigenetic inhibitor. The combination of DOX and SAHA showed synergistic effects on suppressing non-small cell lung cancer cells and xenograft tumors without apparent adverse effects. AE facilitated the delivery of drugs to tumor tissue and extended the retention time of drugs within tumors. Taken together, these studies suggest that the bioengineered artificial exosomes may serve as novel delivery strategy for chemotherapeutics to treat non-small cell lung cancer.
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