铁蛋白
细胞毒性
癌症研究
纳米医学
医学
化学
体外
纳米技术
材料科学
内科学
纳米颗粒
生物化学
作者
Changlong Wang,Wei Zhang,Yanjie He,Zirui Gao,Liyuan Liu,Siyao Yu,Yuxing Hu,Shuang Wang,Chaochao Zhao,Hui Li,Jinan Shi,Wu Zhou,Feng Li,Hua Yue,Yuhua Li,Wei Wei,Guanghui Ma,Ding Ma
标识
DOI:10.1038/s41565-021-00980-7
摘要
Trivalent arsenic (AsIII) is an effective agent for treating patients with acute promyelocytic leukaemia, but its ionic nature leads to several major limitations like low effective concentrations in leukaemia cells and substantial off-target cytotoxicity, which limits its general application to other types of leukaemia. Here, building from our clinical discovery that cancerous cells from patients with different leukaemia forms featured stable and strong expression of CD71, we designed a ferritin-based As nanomedicine, As@Fn, that bound to leukaemia cells with very high affinity, and efficiently delivered cytotoxic AsIII into a large diversity of leukaemia cell lines and patient cells. Moreover, As@Fn exerted strong anti-leukaemia effects in diverse cell-line-derived xenograft models, as well as in a patient-derived xenograft model, in which it consistently outperformed the gold standard, showing its potential as a precision treatment for a variety of leukaemias.
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