首页> 外文会议>IEEE International Solid- State Circuits Conference >11.3 A Capacitive Biosensor for Cancer Diagnosis Using a Functionalized Microneedle and a 13.7b-Resolution Capacitance-to-Digital Converter from 1 to 100nF
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11.3 A Capacitive Biosensor for Cancer Diagnosis Using a Functionalized Microneedle and a 13.7b-Resolution Capacitance-to-Digital Converter from 1 to 100nF

机译:11.3使用官能化的微针和13.7B分辨率电容到数字转换器的癌症诊断的电容性生物传感器从1到100nf

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A malignant tumor consists of rapidly growing cancer cells, and requires a dedicated blood supply to provide oxygen and nutrients. Therefore, vascular endothelial growth factor (VEGF), a signal protein produced by cells stimulating angiogenesis, is considered as a key biomarker in clinical diagnosis of cancers [1], [2]. There are already existing methods for the VEGF detection requiring advanced instruments and complex protocols [2]. Recently, significant progress has been achieved in biosensors for the detection and quantification of VEGF using synthetic receptors [2]. In particular, a capacitive biosensor detects the change of dielectric properties when the receptor binds to VEGF, and capacitance change can be used to quantify the reactions. However, the sensitivity of the capacitive biosensors still needs to be improved for use in cancer diagnosis.
机译:恶性肿瘤由癌细胞快速增长,并且需要专用的血液供应来提供氧气和营养素。因此,血管内皮生长因子(VEGF)是刺激血管生成的细胞产生的信号蛋白,被认为是癌症临床诊断中的关键生物标志物[1],[2]。已经存在VEGF检测的现有方法,需要先进的仪器和复杂的协议[2]。最近,在使用合成受体的检测和定量VEGF的生物传感器中已经实现了显着进展[2]。特别地,当受体与VEGF结合时,电容性生物传感器检测电介质特性的变化,并且可以使用电容变化来量化反应。然而,在癌症诊断中使用仍需要改善电容性生物传感器的敏感性。

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