细木质部
假阳性悖论
检出限
生物
细菌
金标准(测试)
环介导等温扩增
聚合酶链反应
微生物学
病毒学
色谱法
化学
医学
计算机科学
DNA
遗传学
基因
机器学习
内科学
作者
Lucia Sarcina,Eleonora Macchia,Giuliana Loconsole,Giusy D’Attoma,Paolo Bollella,Michele Catacchio,Francesco Leonetti,Cinzia Di Franco,Vito Elicio,Gaetano Scamarcio,Gerardo Palazzo,D. Boscia,Pasquale Saldarelli,Luisa Torsi
出处
期刊:Advanced Science
[Wiley]
日期:2022-08-28
卷期号:9 (30): e2203900-e2203900
被引量:22
标识
DOI:10.1002/advs.202203900
摘要
Abstract Pathogens ultra‐sensitive detection is vital for early diagnosis and provision of restraining actions and/or treatments. Among plant pathogens, Xylella fastidiosa is among the most threatening as it can infect hundreds of plant species worldwide with consequences on agriculture and the environment. An electrolyte‐gated transistor is here demonstrated to detect X. fastidiosa at a limit‐of‐quantification (LOQ) of 2 ± 1 bacteria in 0.1 mL (20 colony‐forming‐unit per mL). The assay is carried out with a millimeter‐wide gate functionalized with Xylella ‐capturing antibodies directly in saps recovered from naturally infected plants. The proposed platform is benchmarked against the quantitave polymerase chain reaction (qPCR) gold standard, whose LOQ turns out to be at least one order of magnitude higher. Furthermore, the assay selectivity is proven against the Paraburkholderia phytofirmans bacterium (negative‐control experiment). The proposed label‐free, fast (30 min), and precise (false‐negatives, false‐positives below 1%) electronic assay, lays the ground for an ultra‐high performing immunometric point‐of‐care platform potentially enabling large‐scale screening of asymptomatic plants.
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