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Ultrasensitive Clinical Enumeration of Rare Cells ex Vivo Using a Micro-Hall Detector

机译:使用微厅探测器的稀有细胞离体的超敏临床抑制

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The ability to detect rare cells (<100 cells/ml whole blood) and obtain quantitative measurements of specific biomarkers on single cells is increasingly important in basic biomedical research. Implementing such methodology for widespread use in the clinic, however, has been hampered by low cell density, small sample sizes, and requisite sample purification. To overcome these challenges, we have developed a microfluidic chip-based micro-Hall detector (|xHD), which can directly measure single, immunomagnetically tagged cells in whole blood. The muHD can detect single cells even in the presence of vast numbers of blood cells and unbound reactants, and does not require any washing or purification steps. In addition, the high bandwidth and sensitivity of the semiconductor technology used in the muHD enables high-throughput screening (currently ~10~7 cells/min). The clinical use of the muHD chip was demonstrated by detecting circulating tumor cells in whole blood of 20 ovarian cancer patients at higher sensitivity than currently possible with clinical standards. Furthermore, the use of a panel of magnetic nanopartides, distinguished with unique magnetization properties and bio-orthogonal chemistry, allowed simultaneous detection of the biomarkers epithelial cell adhesion molecule (EpCAM), human epidermal growth factor receptor 2 (HER2)/neu, and epidermal growth factor receptor (EGFR) on individual cells. This cost-effective, single-cell analytical technique is well suited to perform molecular and cellular diagnosis of rare cells in the clinic.
机译:检测稀有细胞(<100细胞/ ml全血)的能力并获得单细胞上特异性生物标志物的定量测量在基本生物医学研究中越来越重要。然而,在临床中实施此类方法论是通过低细胞密度,小样本尺寸和必要的样品纯化被阻碍的。为了克服这些挑战,我们开发了一种基于微流体芯片的微观霍尔探测器(| XHD),其可以直接测量全血中的单次免疫磁标记的细胞。即使在大量的血细胞和未结合反应物存在下,MUHD也可以检测单细胞,并且不需要任何洗涤或纯化步骤。此外,MUHD中使用的半导体技术的高带宽和灵敏度使高通量筛选(目前约为10〜7个细胞/分钟)。通过在20卵巢癌患者的全血中检测到更高的灵敏度,通过临床标准的敏感性较高的循环肿瘤细胞来证明MUHD芯片的临床应用。此外,使用磁性纳米粒子的面板,以独特的磁化性能和生物正交化学特征在一起,允许同时检测生物标志物上皮细胞粘附分子(EPCAM),人表皮生长因子受体2(HER2)/ neu和表皮种生长因子受体(EGFR)对个体细胞。这种具有成本效益的单细胞分析技术非常适合于在临床中对稀有细胞进行分子和细胞诊断。

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