
第35卷第1期 2015年3月
化学传感器 CHEMICALSENSORS
Vol. 35, No. 1 Mar.2 015
基于纳米酰菁钻修饰的石墨烯作为过氧化物模拟酶
的信号放大型免疫传感器的研究
杨哲涵,汪娟,卓颖,柴雅琴*(西南大学化学化工学院,重庆400715)
摘要:该文利用酸菁钴纳米粒子修饰氧化石墨烯(NanoCoPc/GO)用于构建无酶的信号放大型电化学免疫传感器来灵敏地检测降钙素原(PCT)。纳米酰菁钴和氧化石墨烯都具有类似于天然过氧化物酶的性质可以催化氧化H2O2。因此,当H2O2的存在时,NanoCoPc/GO通过催化H2O2实现对电活性物质的信号的放大。 NanoCoPc/GO作为模拟酶用于电化学放大时,可以避免天然酶的缺点比如价格昂贵和容易随着环境变化而
发生变性。结果表明,该免疫传感器检测PCT的线性范围在0.025~5.0ng/mL,最低检测限为8pg/mL 关键词:纳米酸菁钻;氧化石墨烯;降钙素原;电化学传感器
Asignalamplificationimmunosensorbasedonnano-cobalt
phthalocyanine modified graphene as a peroxidase
simulatedenzyme
Yang Zhe-han, Wang Juan, Zhuo Ying, Chai Ya-qin
(School of Chemistry and Chemical Engineering, Southwest University, Chongqing 400715, China )
Abstract: In this work, a signal amplified electrochemical immunosensor based on cobalt phthalocyanine nanoparticles decorated graphene oxide nanocomposite (NanoCoPc/GO) was proposed for sensitive detection procalcitonin (PCT). Here, both cobalt phthalocyanine nanoparticles and graphene oxide exhibited an intrinsic enzyme mimetic activity similar to natural peroxidase. In the present of H,O, an enhanced electrochemical signal was obtained as the catalysis of NanoCoPc/GO to H,O, Importantly, NanoCoPc/GO as peroxidase mimetic applied to electrochemical amplification system could avoid the disadvantage of nature enzymes such as expensive and easily denatured by environmental changes. The proposed immunosensor showed good sensitivity for quantitative determination of PCT.
Key words: cobalt phthalocyanine nanoparticles; graphene oxide; procalcitonin; electrochemical immunosensor
的增加,抗生素的滥用以及其他过敏反应[3]。近年
引言 0
细菌感染在我国患病新生儿中占有相当比
例,早期诊断和及时治疗能够有效提高诊疗水平和降低新生儿病死率]。但是,由于细菌感染与病毒感染、非感染引起炎症的症状非常相似,导致在临床中细菌感染很难被准确的诊断出来[2]。同时,对细菌感染的错误诊断可能会导致治疗费用
基金项目:国家自然科学基金(51473136)资助*通信联系人,E-mail:yqchai@swu.edu.cn
来,降钙素原(PCT)被认为是诊断细菌感染性疾病的可靠标志物[4]。当患者被细菌感染后,血液中 PCT的量会急剧的增加,并且与感染的严重程度呈一定的相关性[5]。因此,可以通过有效检测患者血液中PCT的量从而判断是否是细菌感染
电化学免疫传感器是将免疫识别和电化学分析方法相结合的一种新型的免疫分析方法。与