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A 256 Pixel Magnetoresistive Biosensor Microarray in 0.18 µm CMOS

机译:采用0.18 µm CMOS的256像素磁阻生物传感器微阵列

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摘要

Magnetic nanotechnologies have shown significant potential in several areas of nanomedicine such as imaging, therapeutics, and early disease detection. Giant magnetoresistive spin-valve (GMR SV) sensors coupled with magnetic nanotags (MNTs) possess great promise as ultra-sensitive biosensors for diagnostics. We report an integrated sensor interface for an array of 256 GMR SV biosensors designed in 0.18 µm CMOS. Arranged like an imager, each of the 16 column level readout channels contains an analog front-end and a compact ΣΔ modulator (0.054 mm$^{2}$ ) with 84 dB of dynamic range and an input referred noise of 49 nT/$surd$Hz. Performance is demonstrated through detection of an ovarian cancer biomarker, secretory leukocyte peptidase inhibitor (SLPI), spiked at concentrations as low as 10 fM. This system is designed as a replacement for optical protein microarrays while also providing real-time kinetics monitoring.
机译:磁性纳米技术已在纳米医学的多个领域显示出巨大潜力,例如成像,治疗和疾病早期检测。巨磁阻自旋阀(GMR SV)传感器与磁性纳米标签(MNT)结合,作为用于诊断的超灵敏生物传感器具有广阔的前景。我们报告了一个集成传感器接口,该接口用于设计为0.18 µm CMOS的256个GMR SV生物传感器阵列。像成像仪一样排列,每个16列电平读出通道均包含一个模拟前端和一个紧凑的ΣΔ调制器(0.054 mm $ ^ {2} $),动态范围为84 dB,输入参考噪声为49 nT / $ surd $ Hz。通过检测浓度低至10 fM的卵巢癌生物标记物,分泌型白细胞肽酶抑制剂(SLPI)即可证明其性能。该系统旨在替代光学蛋白质微阵列,同时还提供实时动力学监测。

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