多路复用
免疫分析
分析灵敏度
邻近连接试验
计算生物学
再现性
色谱法
生物
化学
生物信息学
抗体
医学
生物化学
遗传学
病理
替代医学
受体
作者
Erika Assarsson,Martin Lundberg,Göran Holmquist,Johan Björkesten,Søren Thorsen,Daniel Ekman,Anna Eriksson,Emma Rennel Dickens,Sandra Ohlsson,Gabriella Edfeldt,Ann‐Catrin Andersson,Patrik Lindstedt,Jan Stenvang,Mats Gullberg,Fabrice Simon
出处
期刊:PLOS ONE
[Public Library of Science]
日期:2014-04-22
卷期号:9 (4): e95192-e95192
被引量:1128
标识
DOI:10.1371/journal.pone.0095192
摘要
Medical research is developing an ever greater need for comprehensive high-quality data generation to realize the promises of personalized health care based on molecular biomarkers. The nucleic acid proximity-based methods proximity ligation and proximity extension assays have, with their dual reporters, shown potential to relieve the shortcomings of antibodies and their inherent cross-reactivity in multiplex protein quantification applications. The aim of the present study was to develop a robust 96-plex immunoassay based on the proximity extension assay (PEA) for improved high throughput detection of protein biomarkers. This was enabled by: (1) a modified design leading to a reduced number of pipetting steps compared to the existing PEA protocol, as well as improved intra-assay precision; (2) a new enzymatic system that uses a hyper-thermostabile enzyme, Pwo, for uniting the two probes allowing for room temperature addition of all reagents and improved the sensitivity; (3) introduction of an inter-plate control and a new normalization procedure leading to improved inter-assay precision (reproducibility). The multiplex proximity extension assay was found to perform well in complex samples, such as serum and plasma, and also in xenografted mice and resuspended dried blood spots, consuming only 1 µL sample per test. All-in-all, the development of the current multiplex technique is a step toward robust high throughput protein marker discovery and research.
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