Department of Dermatology, University of Rochester, Rochester, New York 14627, United States.
Department of Biochemistry and Biophysics, University of Rochester, Rochester, New York 14627, United States.
ACS Sens. 2023 Feb 24;8(2):739-747. doi: 10.1021/acssensors.2c02276. Epub 2023 Feb 14.
Wearable, mobile, and point-of-care (POC) sensors comprise a rapidly expanding field of devices aimed at improving human health by relaying real-time biometric data such as heart rate and glucose levels. The current scope of what these devices can offer healthcare is limited by their inability to measure biomarkers associated with inflammation, well-being, and disease. Photonic biosensors that integrate sensing elements directly with spectrometers, lasers, and detectors are an attractive approach to enabling POC sensors, with distinct advantages in terms of size, weight, power consumption, and cost. Here, we have demonstrated for the first time the integration of photonic microring resonator biosensors with an on-chip microring filter bank spectrometer for the controlled detection of inflammatory biomarker C-reactive protein (CRP) in serum. We demonstrate that sensor and spectrometer performance is tolerant of temperature variation, as temperature dependence moves in parallel. Finally, we assess the impact of manufacturing variability on the 300 mm wafer scale on the performance of the spectrometer. Taken together, these results suggest that integration of on-chip ring filter bank spectrometers with ring resonator-based biosensors constitutes an attractive approach toward cost-effective integrated sensor development.
可穿戴、移动和即时检测 (POC) 传感器组成了一个快速发展的设备领域,旨在通过传递实时生物特征数据(如心率和血糖水平)来改善人类健康。这些设备在提供医疗保健方面的当前范围受到其无法测量与炎症、健康和疾病相关的生物标志物的限制。将传感元件直接与光谱仪、激光器和探测器集成的光子生物传感器是实现 POC 传感器的一种有吸引力的方法,在尺寸、重量、功耗和成本方面具有明显优势。在这里,我们首次展示了将光子微环谐振器生物传感器与片上微环滤波器组光谱仪集成,用于对血清中的炎症生物标志物 C 反应蛋白 (CRP) 进行受控检测。我们证明了传感器和光谱仪的性能可以耐受温度变化,因为温度依赖性是平行移动的。最后,我们评估了制造变异性对 300mm 晶圆级光谱仪性能的影响。综上所述,这些结果表明,将片上环形滤波器组光谱仪与基于环形谐振器的生物传感器集成构成了一种有吸引力的方法,可实现具有成本效益的集成传感器开发。