Texas A&M University, Department of Biomedical Engineering, College Station, Texas, United States, United States.
Texas A&M Engineering Experiment Station, Center for Remote Health Technologies and Systems, College Station, Texas, United States, United States.
J Biomed Opt. 2022 Sep;27(9). doi: 10.1117/1.JBO.27.9.095006.
Point-of-care (POC) platforms utilizing optical biosensing strategies can achieve on-site detection of biomarkers to improve the quality of care for patients in low-resource settings.
We aimed to develop a portable, multi-modal spectroscopic platform capable of performing Raman and fluorescence measurements from a single sample site.
We designed the spectroscopic platform in OpticStudio using commercial optical components and built the system on a portable optical breadboard. Two excitation and collection arms were utilized to detect the two optical signals. The multi-modal functionality was validated using ratiometric Raman/fluorescence samples, and the potential utility was demonstrated using a model bioassay for cardiac troponin I.
The designed spectroscopic platform achieved a spectral resolution of 0.67 ± 0.2 nm across the Raman detection range (660 to 770 nm). The ratiometric Raman/fluorescence samples demonstrated no crosstalk between the two detector arms across a gradient of high molar concentrations. Testing of the model bioassay response showed that the integrated approach improved the linearity of the calibration curve from (R = 0.977) for the Raman only and (R = 0.972) for the fluorescence only to (R2 = 0.988) for the multi-modal approach.
These findings demonstrate the potential impact of a multi-modal POC spectroscopic platform to improve the sensitivity and robustness necessary for biomarker detection.
利用光学生物传感策略的即时检测(POC)平台可以实现生物标志物的现场检测,从而改善资源匮乏环境中患者的护理质量。
我们旨在开发一种便携式、多模态光谱平台,能够从单个样品部位进行拉曼和荧光测量。
我们在 OpticStudio 中使用商业光学元件设计了光谱平台,并在便携式光学试验台上构建了系统。两个激发和收集臂用于检测两种光学信号。使用比率式拉曼/荧光样品验证了多模态功能,并使用心肌肌钙蛋白 I 的模型生物测定法证明了其潜在用途。
设计的光谱平台在拉曼检测范围内(660 至 770nm)实现了 0.67±0.2nm 的光谱分辨率。两个探测器臂之间的比率式拉曼/荧光样品在高摩尔浓度梯度下没有串扰。对模型生物测定响应的测试表明,集成方法将校准曲线的线性度从仅拉曼(R=0.977)和仅荧光(R=0.972)提高到多模态方法的(R2=0.988)。
这些发现表明,多模态即时检测光谱平台具有改善生物标志物检测所需的灵敏度和稳健性的潜力。