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Complementary Metal Oxide Semiconductor Compatible Silicon Nanowires-on-a-Chip: Fabrication and Preclinical Validation for the Detection of a Cancer Prognostic Protein Marker in Serum

机译:芯片上互补金属氧化物半导体兼容的硅纳米线:血清中癌症预后蛋白标记物的检测的制备和临床前验证

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An integrated translational biosensing technology based on arrays of silicon nanowire field-effect transistors (SiNW FETs) is described and has been preclinically validated for the ultrasensitive detection of the cancer biomarker ALCAM in serum. High-quality SiNW arrays have been rationally designed toward their implementation as molecular biosensors. The FET sensing platform has been fabricated using a complementary metal oxide semiconductor (CMOS)-compatible process. Reliable and reproducible electrical performance has been demonstrated via electrical characterization using a custom-designed portable readout device. Using this platform, the cancer prognostic marker ALCAM could be detected in serum with a detection limit of 15.5 pg/mL. Importantly, the detection could be completed in less than 30 min and span a wide dynamic detection range (similar to 10 (5)). The SiNW-on-a-chip biosensing technology paves the way to the translational clinical application of FET in the detection of cancer protein markers.
机译:描述了一种基于硅纳米线场效应晶体管(SiNW FET)阵列的集成翻译生物传感技术,并已在临床上经过验证,可用于血清中癌症生物标记物ALCAM的超灵敏检测。高质量的SiNW阵列已被合理地设计为用作分子生物传感器。 FET感测平台已使用互补金属氧化物半导体(CMOS)兼容工艺制造。使用定制设计的便携式读数设备通过电气特性已经证明了可靠和可再现的电气性能。使用该平台,可以在血清中检测到癌症预后标志物ALCAM,检测限为15.5 pg / mL。重要的是,检测可以在不到30分钟的时间内完成,并跨越很宽的动态检测范围(类似于10(5))。 SiNW芯片上生物传感技术为FET在癌症蛋白标记物检测中的转化临床应用铺平了道路。

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