基于硅纳米球探针构建的超灵敏电致化学发光免疫传感器用于丙肝核心抗原检测与临床诊断
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南京市科学技术厅社会发展项目(201201066);南京市医学科技发展项目(YKK15144)


Nanoparticle probe for the detection of HCV core antigen and clinical diagnosis
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    目的:制备硅纳米球包裹的Ru(bpy)32+(SiO2@Ru)作为电致化学发光(electrogenerated chemiluminescence, ECL)探针的生物传感器,评价其在丙型肝炎核心抗原(HCVcAg)检测中的应用价值。方法:采用“油包水”的微乳剂方案,制备SiO2@Ru纳米复合物,纳米粒子粒径一致,因此具有很好的重复性,应用戊二醛作为交联剂实现抗体与硅球的交联。SiO2@Ru可作为ECL探针,通过夹心法检测HCVcAg。结果:HCVcAg检测的线性范围为1~1 000 fmol/L,最低检出限为3 fmol/L。与临床HCV RNA比较,有较好的相关性,线性相关系数R2=0.937 9。结论:构建HCVcAg的检测的硅纳米免疫传感器具有很高的灵敏度和很好的重复性,可用于临床诊断、疗效评价以及血液中心的血源筛查。

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    Objective: To prepare Ru(bpy)32+(SiO2@Ru) coated silica nanospheres as electrochemiluminescence (electrogenerated chemiluminescence, ECL) biosensor probe, and evaluate its application value in the detection of the hepatitis C core antigen (HCVcAg). Methods: The water-in-oil(W/O) microemulsion method was employed for one-pot synthesis of SiO2@Ru nanoparticles. The as-synthesized SiO2@Ru nanoparticles has a narrow size distribution, which allowed reproducible loading of Ru(bpy)32+ inside the silica shell and HCVcAg, on the silica surface with glutaraldehyde as linkage. The as-synthesized SiO2@Ru could be used as a lable for ultrasensitive detection of HCVcAg through a sandwich immunoassay process. Results: The calibration range of HCVcAg concentration detection was 1-1 000 fmol/L,the lowest detection limit was 3 fmol/L. Compared with clinical RNA HCV, there was a good correlation, linear correlation coefficient was R2=0.937 9. Conclusion: With high sensitivity and good reproducibility, SiO2@Ru could be used as a label in clinical diagnosis, curative effect evaluation and blood screening of blood center.

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蔡心安,阮福明,郁金红,周镇先.基于硅纳米球探针构建的超灵敏电致化学发光免疫传感器用于丙肝核心抗原检测与临床诊断[J].南京医科大学学报(自然科学版),2017,(10):1257-1260

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  • 收稿日期:2016-10-10
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  • 在线发布日期: 2017-11-06
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