单核细胞增生李斯特菌
检出限
生物传感器
细菌
化学
免疫磁选
磁性纳米粒子
头孢吡肟
色谱法
污染
纳米技术
生物
材料科学
纳米颗粒
生物化学
抗生素耐药性
抗生素
生态学
遗传学
亚胺培南
作者
Fangbin Xiao,Weiqiang Li,Zhixing Wang,Qian Xu,Yang Song,Jin Huang,Xuekun Bai,Hengyi Xu
标识
DOI:10.1016/j.jhazmat.2023.132250
摘要
Pathogenic bacteria contamination poses a major threat to human health. The detection of low-abundance bacteria in complex samples has always been a knotty problem, and high-sensitivity bacterial detection remains challenging. In this work, a novel magnetic platform with high enrichment efficiency for L. monocytogenes was developed. The magnetic platform was designed by branched polyglutamic acid-mediated indirect coupling of cefepime on magnetic nanoparticles (Cefe-PGA-MNPs), and the specific enrichment of low-abundance L. monocytogenes in real samples was achieved by an external magnet, with a capture efficiency over 90%. A controllable and highly active platinum-palladium nanozyme was synthesized and further introduced in the magnetic nanoplatform for the construction of enzymatic colorimetric biosensor. The total detection time for L. monocytogenes was within 100 min. The colorimetric signals generated by labelled nanozyme were corresponding to different concentrations of L. monocytogenes, with a limit of detection (LOD) of 3.1 × 101 CFU/mL, and high reliability and accuracy (with a recovery rate ranging from 96.5% to 116.4%) in the test of real samples. The concept of the developed method is applicable to various fields of biosensing that rely on magnetic separation platforms.
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