Department of Chemistry, Federal University of Maranhão-UFMA, 65080-805, São Luís, MA, Brazil.
Department of Physics, Federal University of Maranhão-UFMA, 65080-805, São Luís, MA, Brazil.
Anal Methods. 2023 Dec 7;15(47):6541-6550. doi: 10.1039/d3ay01309j.
This work describes the development of a membraneless, self-powered immunosensor exploiting a photoelectrochemical system based on two photoelectrodes for cardiac troponin I (cTn). An electrode based on CaBiTaO combined with bismuth oxyiodides (BiOI/BiOI/BiOI) was modified with the cTnI antibody (-cTnI) and applied in a photoelectrochemical cell as a photoanode. To perform the cTnI detection exploiting a self-powered photoelectrochemical setup, the immunosensor (-cTnI/BiOI/BiOI/BiOI/CaBiTaO/FTO) was coupled to a photoelectrochemical cell containing a photocathode based on CuBiO (CBO/FTO) for zero-biased photoelectrochemical immunosensing of cardiac troponin I (cTnI) biomarker. For comparison purposes, the photoanode was applied for cTnI detection in a three-electrode electrochemical cell. The spectroscopic, structural, and morphological characteristics of the photoelectrochemical (PEC) materials were evaluated using scanning electron microscopy (SEM), energy-dispersive X-ray spectroscopy (EDS), and X-ray diffraction (XRD). Electrochemical impedance spectroscopy (EIS) measurements were performed in the presence and absence of light to investigate the effects of photons on the charge transfer resistance of the photoanode. The influence of the cTnI biomarker on the photoelectrochemical response of the -cTnI antibody-modified photoelectrochemical platform (-cTnI/BiOI/BiOI/BiOI/CaBiTaO/FTO) was evaluated by measuring the photocurrent of the system. The immunosensor presented a linear response ranging from 1 pg mL to 200 ng mL as well as a mean recovery percentage between 95.7% and 108.0% in real human serum samples for the cTnI biomarker.
这项工作描述了一种无膜、自供电免疫传感器的开发,该传感器利用基于两个光电电极的光电化学系统来检测心肌肌钙蛋白 I (cTn)。基于 CaBiTaO 的电极与铋氧碘化物 (BiOI/BiOI/BiOI) 结合,修饰有 cTnI 抗体 (-cTnI),并作为光电阳极应用于光电化学电池中。为了利用自供电光电化学装置进行 cTnI 检测,将 (-cTnI/BiOI/BiOI/BiOI/CaBiTaO/FTO) 免疫传感器与含有基于 CuBiO 的光电阴极的光电化学电池耦合,用于无偏光电化学免疫检测心肌肌钙蛋白 I (cTnI) 生物标志物。为了比较目的,将光电阳极应用于三电极电化学电池中进行 cTnI 检测。使用扫描电子显微镜 (SEM)、能量色散 X 射线光谱 (EDS) 和 X 射线衍射 (XRD) 评估光电化学 (PEC) 材料的光谱、结构和形态特征。进行电化学阻抗谱 (EIS) 测量,在有光和无光的情况下进行,以研究光子对光电阳极电荷转移电阻的影响。通过测量系统的光电流来评估 cTnI 生物标志物对 -cTnI 抗体修饰的光电化学平台 (-cTnI/BiOI/BiOI/BiOI/CaBiTaO/FTO) 的光电化学响应的影响。该免疫传感器在真实的人血清样本中,对 cTnI 生物标志物的线性响应范围为 1 pg mL 至 200 ng mL,平均回收率在 95.7%至 108.0%之间。