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Dual Detection of Cancer Biomarker CA125 Using Absorbance and Electrochemical Methods

机译:利用吸光度和电化学方法双重检测癌症生物标志物CA125

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摘要

An enzyme-linked immunoassay based on the dual signal transduction mechanisms has been developed for detection of ovarian cancer biomarker CA125. The immunoassays use a nanoelectrode array (NEA) chip and absorbance methods for the dual detection. The NEA is used to confirm the optical detection of CA125 that is carried out in a high-binding 96-well plate. An alkaline phosphatase (AP) enzyme was used to label the detection antibody to allow for both the optical and electrochemical detection of CA125. Two kinds of substrates were catalyzed by the AP enzyme. Para-nitrophenylphosphate (PNPP) produces chromogenic para-nitrophenol (PNP), which can be optically detected at 405 nm. Para-aminophenylphosphate (PAPP) produces electroactive para-aminophenol (PAP), which can be detected amperometrically between −0.1 to 0.3 V. The linear ranges have been determined to be 5–1000 U/mL and 5–1000 U/mL for the optical and electrochemical immunoassays, respectively. The limit of detection of the optical immunoassay is 1.3 U/mL and 40 U/mL for the optical and electrochemical methods, respectively.
机译:已经开发了基于双重信号转导机制的酶联免疫测定法,用于检测卵巢癌生物标志物CA125。免疫测定使用纳米电极阵列(NEA)芯片和吸光度方法进行双重检测。 NEA用于确认在高结合力的96孔板中进行的CA125的光学检测。碱性磷酸酶(AP)酶用于标记检测抗体,以实现CA125的光学和电化学检测。 AP酶催化两种底物。对硝基苯磷酸酯(PNPP)产生发色的对硝基苯酚(PNP),可以在405 nm处进行光学检测。对氨基苯基磷酸酯(PAPP)产生电活性对氨基苯酚(PAP),可以在-0.1至0.3 V之间通过电流分析法检测。线性范围确定为5–1000 U / mL和5–1000 U / mL。分别进行光学和电化学免疫分析。光学和电化学方法的光学免疫分析检测极限分别为1.3 U / mL和40 U / mL。

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