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Optical Biochips for Biomarkers-IgM Complexes Codetermination in Hepatocellular Carcinoma

机译:生物标志物-IgM复合物在肝细胞癌中的光学生物芯片

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Availability of efficient and cost effective screening devices for cancer early detection is urgently needed to improve quality of life. Mass screening for early detection of cancer will reduce the ever increasing social costs associated to handling patients with diseases which are at advanced stage for failure of existing diagnostic procedures or non adequateness for broad use. One of the most important factors in the survival of cancer is detection at an early stage, and tumour biomarkers are important molecular signatures of the phenotype of a cell that aid in early cancer detection and risk assessment. Many conventional biomarkers have been found overexpressed in neoplastic tissues and some are used for diagnostic application. However, mainly due to the cancer heterogeneity, no single marker has shown to be fully satisfactory in terms of sensibility and specificity for early cancer detection. This still unmet medical need could be fulfilled by combining nanotechnologies and biotechnologies to create biochips for the simultaneous detection of several biomarkers at the same time in order to increase sensitivity and reduce costs. These devices will allow the diagnosis of cancer in an early stage and will allow the identification of many different forms of cancer possible within minutes and directly at the point-of-care, thus doing away with the conventional techniques where samples are sent to a laboratory and put through labour-intensive processes that may take several hours to achieve a result.
机译:迫切需要有效和经济效益筛查装置的可用性,以提高生活质量。用于早期检测癌症的肿瘤筛选将减少与处理疾病患者相关的患者,这些社会成本降低,这些疾病处于高级阶段,以进行广泛使用的现有诊断程序或非充分性。癌症存活中最重要的因素之一是在早期发现的,肿瘤生物标志物是有助于早期癌症检测和风险评估的细胞表型的重要分子鉴定。已经发现许多常规生物标志物在肿瘤组织中过表达,其中一些用于诊断应用。然而,主要是由于癌症异质性,在早期癌症检测的敏感性和特异性方面没有显示出完全令人满意的。通过组合纳米技术和生物技术来创建生物芯片以同时进行多个生物标志物的生物芯片可以实现这种仍然未满足的需要,以提高灵敏度并降低成本。这些装置将允许在早期阶段诊断癌症,并在分钟内允许鉴定许多不同形式的癌症,直接在护理点,从而脱离样本被送到实验室的常规技术并通过劳动密集型流程,可能需要几个小时才能实现结果。

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