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Nanoparticle-based biosensor for the detection of emerging pandemic influenza strains

机译:基于纳米粒子的生物传感器,用于检测新兴大流行性流感病毒株

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摘要

Electrically active magnetic (EAM) nanoparticles, consisting of aniline monomer polymerized around gamma iron(III) oxide (γ-Fe_2O_3) cores, serve as the basis of a direct-charge transfer biosensor developed for detection of surface glycoprotein hemagglutinin (HA) from the Influenza A virus (FLUAV) H5N1 (A/Vietnam/1203/04). H5N1 preferentially binds α2,3-linked host glycan receptors. EAM nanoparticles were immunofunctionalized with antibodies against target HA. Glycans preincubated with HA in 10% mouse serum were incubated with anti-HA-EAM complexes. The anti-HA-EAM complexes effectively acted as immunomagnetic separator of HA from mouse serum matrix. EAM nanoparticles served as the biosensor transducer for cyclic voltammetry measurements. The polyaniline was made electrically active by hydrochloric acid doping. Experimental results indicate that the biosensor is able to detect recombinant H5 HA at 1.4μM in 10% mouse serum, with high specificity for H5 as compared to H1 (H1N1 A/South Carolina/1/18). This novel design applies EAM nanoparticles in a sensitive, specific, affordable, and easy-to-use biosensor with applications in disease monitoring and biosecurity.
机译:电活性磁性(EAM)纳米粒子由在氧化铁(III)氧化核(γ-Fe_2O_3)核周围聚合的苯胺单体组成,是开发用于直接检测表面糖蛋白血凝素(HA)的直接电荷转移生物传感器的基础。甲型流感病毒(FLUAV)H5N1(A /越南/ 1203/04)。 H5N1优先结合α2,3-连接的宿主聚糖受体。用针对靶HA的抗体将EAM纳米颗粒免疫功能化。将在10%小鼠血清中与HA预孵育的聚糖与抗HA-EAM复合物孵育。抗HA-EAM复合物有效地充当了HA从小鼠血清基质中的免疫磁分离剂。 EAM纳米颗粒用作循环伏安法测量的生物传感器传感器。通过盐酸掺杂使聚苯胺具有电活性。实验结果表明,该生物传感器能够在10%的小鼠血清中检测到1.4μM的重组H5 HA,与H1(H1N1 A / South Carolina / 1/18)相比,对H5的特异性更高。这种新颖的设计将EAM纳米颗粒应用于灵敏,特异,价格适中且易于使用的生物传感器中,并应用于疾病监测和生物安全性。

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