Lipoprotein-biomimetic nanostructure enables efficient targeting delivery of siRNA to Ras-activated glioblastoma cells via macropinocytosis

脂蛋白仿生纳米结构能够通过巨胞饮作用将 siRNA 有效靶向递送至 Ras 激活的胶质母细胞瘤细胞

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作者:Jia-Lin Huang, Gan Jiang, Qing-Xiang Song, Xiao Gu, Meng Hu, Xiao-Lin Wang, Hua-Hua Song, Le-Pei Chen, Ying-Ying Lin, Di Jiang, Jun Chen, Jun-Feng Feng, Yong-Ming Qiu, Ji-Yao Jiang, Xin-Guo Jiang, Hong-Zhuan Chen, Xiao-Ling Gao

Abstract

Hyperactivated Ras regulates many oncogenic pathways in several malignant human cancers including glioblastoma and it is an attractive target for cancer therapies. Ras activation in cancer cells drives protein internalization via macropinocytosis as a key nutrient-gaining process. By utilizing this unique endocytosis pathway, here we create a biologically inspired nanostructure that can induce cancer cells to 'drink drugs' for targeting activating transcription factor-5 (ATF5), an overexpressed anti-apoptotic transcription factor in glioblastoma. Apolipoprotein E3-reconstituted high-density lipoprotein is used to encapsulate the siRNA-loaded calcium phosphate core and facilitate it to penetrate the blood-brain barrier, thus targeting the glioblastoma cells in a macropinocytosis-dependent manner. The nanostructure carrying ATF5 siRNA exerts remarkable RNA-interfering efficiency, increases glioblastoma cell apoptosis and inhibits tumour cell growth both in vitro and in xenograft tumour models. This strategy of targeting the macropinocytosis caused by Ras activation provides a nanoparticle-based approach for precision therapy in glioblastoma and other Ras-activated cancers.

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