微泡
外体
免疫磁选
癌症
细胞
细胞培养
化学
癌细胞
色谱法
小RNA
生物
医学
内科学
生物化学
遗传学
基因
作者
Zixian Yu,Shujing Lin,Fangfang Xia,Yanlei Liu,Di Zhang,Fei Wang,Yanpu Wang,Qichao Li,Jiaqi Niu,Chengxi Cao,Daxiang Cui,Nengquan Sheng,Jiazi Ren,Zhigang Wang,Di Chen
标识
DOI:10.1016/j.bios.2021.113594
摘要
Gastric cancer cell-derived exosomes as biomarkers have a very high application potential to the non-invasive detection of early-stage gastric cancer. However, the small size of exosomes (30-150 nm) results in huge challenges in separating and detecting them from complex media (e.g., plasma, urine, saliva, and cell culture supernatant). Here we proposed a highly integrated exosome separation and detection (ExoSD) chip to immunomagnetic separate exosomes from cell culture supernatant in a manner of continuous flow, and to immunofluorescence detect gastric cancer cell-derived exosomes with high sensitivity. The ExoSD chip has achieved a high exosome recovery (>80%) and purity (>83%) at the injection rate of 4.8 mL/h. Furthermore, experimental results based on clinical serum samples of patients with gastric cancer (stages I and II) show that the detection rate of the ExoSD chip is as high as 70%. The proposed ExoSD chip has been successfully demonstrated as a cutting-edge platform for exosomes separation and detection. It can be served as a versatile platform to extend to the applications of separation and detection of the other cell-derived exosomes or cells.
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