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An integrated double-filtration microfluidic device for isolation, enrichment and quantification of urinary extracellular vesicles for detection of bladder cancer

机译:一种用于分离,富集和定量尿细胞外囊的分离,富集和定量用于检测膀胱癌的一体的双滤液微流体装置

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Extracellular vesicles (EVs), including exosomes and microvesicles, are present in a variety of bodily fluids, and the concentration of these sub-cellular vesicles and their associated biomarkers (proteins, nucleic acids, and lipids) can be used to aid clinical diagnosis. Although ultracentrifugation is commonly used for isolation of EVs, it is highly time-consuming, labor-intensive and instrument-dependent for both research laboratories and clinical settings. Here, we developed an integrated double-filtration microfluidic device that isolated and enriched EVs with a size range of 30–200?nm from urine, and subsequently quantified the EVs via a microchip ELISA. Our results showed that the concentration of urinary EVs was significantly elevated in bladder cancer patients (n?=?16) compared to healthy controls (n?=?8). Receiver operating characteristic (ROC) analysis demonstrated that this integrated EV double-filtration device had a sensitivity of 81.3% at a specificity of 90% (16 bladder cancer patients and 8 healthy controls). Thus, this integrated device has great potential to be used in conjunction with urine cytology and cystoscopy to improve clinical diagnosis of bladder cancer in clinics and at point-of-care (POC) settings.
机译:细胞外囊泡(EVS)包括外泌体和微泡,存在于各种体液中,并且这些亚细胞囊泡及其相关的生物标志物(蛋白质,核酸和脂质)的浓度可用于帮助临床诊断。虽然超速离心通常用于EVS的分离,但对于研究实验室和临床环境来说,它是高度耗时的,劳动密集型和仪器的依赖性。在此,我们开发了一种集成的双滤网微流体装置,其分离和富集的EV,尺寸范围为30-200Ω·Nm,随后通过微芯片ELISA量化EV。我们的研究结果表明,与健康对照相比,膀胱癌患者的膀胱癌患者的浓度明显升高(n?=Δ16)(n?=?8)。接收器操作特征(ROC)分析表明,该集成的EV双滤网具有81.3%的敏感性,特异性为90%(16例膀胱癌患者和8例健康对照)。因此,该集成装置具有很大的潜力,可以与尿液细胞学和膀胱镜检查结合使用,以改善诊所和护理点(POC)设置中膀胱癌的临床诊断。

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