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首页> 外文期刊>Science and technology of advanced materials >An immuno-wall microdevice exhibits rapid and sensitive detection of IDH1-R132H mutation specific to grade II and III gliomas
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An immuno-wall microdevice exhibits rapid and sensitive detection of IDH1-R132H mutation specific to grade II and III gliomas

机译:免疫壁微设备可快速灵敏地检测到II级和III级神经胶质瘤特异的IDH1-R132H突变

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World Health Organization grade II and III gliomas most frequently occur in the central nervous system (CNS) in adults. Gliomas are not circumscribed; tumor edges are irregular and consist of tumor cells, normal brain tissue, and hyperplastic reactive glial cells. Therefore, the tumors are not fully resectable, resulting in recurrence, malignant progression, and eventual death. Approximately 69–80% of grade II and III gliomas harbor mutations in the isocitrate dehydrogenase 1 gene (IDH1), of which 83–90% are found to be the IDH1-R132H mutation. Detection of the IDH1-R132H mutation should help in the differential diagnosis of grade II and III gliomas from other types of CNS tumors and help determine the boundary between the tumor and normal brain tissue. In this study, we established a highly sensitive antibody-based device, referred to as the immuno-wall, to detect the IDH1-R132H mutation in gliomas. The immuno-wall causes an immunoreaction in microchannels fabricated using a photo-polymerizing polymer. This microdevice enables the analysis of the IDH1 status with a small sample within 15?min with substantially high sensitivity. Our results suggested that 10% content of the IDH1-R132H mutation in a sample of 0.33 μl volume, with 500?ng protein, or from 500 cells is theoretically sufficient for the analysis. The immuno-wall device will enable the rapid and highly sensitive detection of the IDH1-R132H mutation in routine clinical practice.
机译:世界卫生组织II级和III级神经胶质瘤最常见于成人的中枢神经系统(CNS)。胶质瘤不受限制;肿瘤边缘是不规则的,由肿瘤细胞,正常脑组织和增生性反应性神经胶质细胞组成。因此,肿瘤不能完全切除,导致复发,恶性进展和最终死亡。 II和III级神经胶质瘤中约有69-80%的突变是在异柠檬酸脱氢酶1基因(IDH1)中,其中83-90%是IDH1-R132H突变。 IDH1-R132H突变的检测应有助于从其他类型的CNS肿瘤中鉴别出II级和III级神经胶质瘤,并有助于确定肿瘤与正常脑组织之间的边界。在这项研究中,我们建立了一种高度敏感的基于抗体的设备,称为免疫壁,可以检测神经胶质瘤中的IDH1-R132H突变。免疫壁在使用光聚合聚合物制造的微通道中引起免疫反应。这种微型设备能够以极高的灵敏度在15分钟内用少量样品分析IDH1状态。我们的结果表明,从理论上讲,在0.33μl体积,500 ng蛋白或500个细胞的样品中,IDH1-R132H突变的10%含量就足以进行分析。免疫壁设备将能够在常规临床实践中快速,高度灵敏地检测IDH1-R132H突变。

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