微泡
内吞作用
适体
化学
外体
细胞生物学
介孔二氧化硅
癌症研究
外渗
医学
分子生物学
生物
细胞
生物化学
免疫学
小RNA
基因
介孔材料
催化作用
作者
Xiaodong Xie,Huifang Nie,Yu Zhou,Shu Lian,Hao Mei,Yusheng Lu,Haiyan Dong,Fengqiao Li,Tao Li,Bifei Li,Jie Wang,Min Lin,Chaihung Wang,Jingwei Shao,Yu Gao,Jianming Chen,Fang Xie,Jia Lee
标识
DOI:10.1038/s41467-019-13316-w
摘要
Abstract There are disease-causing biohazards in the blood that cannot be treated with modern medicines. Here we show that an intelligently designed safe biomaterial can precisely identify, tow and dump a targeted biohazard from the blood into the small intestine. Positively charged mesoporous silica nanoparticles (MSNs) functionalized with EGFR-targeting aptamers (MSN-AP) specifically recognize and bind blood-borne negatively charged oncogenic exosomes (A-Exo), and tow A-Exo across hepatobiliary layers and Oddi’s sphincter into the small intestine. MSN-AP specifically distinguish and bind A-Exo from interfering exosomes in cell culture and rat and patient blood to form MSN-AP and A-Exo conjugates (MSN-Exo) that transverse hepatocytes, cholangiocytes, and endothelial monolayers via endocytosis and exocytosis mechanisms, although Kupffer cells have been shown to engulf some MSN-Exo. Blood MSN-AP significantly decreased circulating A-Exo levels, sequentially increased intestinal A-Exo and attenuated A-Exo-induced lung metastasis in mice. This study opens an innovative avenue to relocate blood-borne life-threatening biohazards to the intestine.
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