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A novel peptide-based sensor platform for detection of anti-Toxoplasma gondii immunoglobulins

机译:一种用于检测抗毒素的抗弓形虫免疫球蛋白的新型肽的传感器平台

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摘要

Toxoplasma gondii is an intracellular protozoan parasite responsible for toxoplasmosis, which affects humans and animals. Serologic detection of anti-T. gondii immunoglobulins plays a crucial role in the clinical diagnosis of toxoplasmosis. In this work, a novel electrochemical immunosensor for detecting anti-T. gondii immunoglobulins is reported, based on immobilization of an in silico predicted peptide (PepB3), obtained from membrane protein of T. gondii, on the graphite electrode modified with poly(3-hydroxybenzoic acid). Indirect ELISA confirmed infection and binding specificity of peptide PepB3. Molecular modelling and simulations show this peptide binds to the T gondii human Fab antibody in the surface antigen 1 (SAG1) binding site, remaining a stable complex during the molecular dynamic simulations, especially by hydrogen bonds and hydrophobic interactions. This electrochemical immunosensor was able to discriminate different periods of infection, using infected mouse serum samples, showing selectivity and discriminating infected and uninfected mouse serum. (C) 2019 Published by Elsevier B.V.
机译:弓形虫是一种负责弓形虫病的细胞内原生动物寄生虫,这会影响人类和动物。抗干的血清学检测。 Gondii免疫球蛋白在弓形虫病的临床诊断中起着至关重要的作用。在这项工作中,一种用于检测抗-t的新型电化学免疫传感器。报道基于在用聚(3-羟基苯甲酸)改性的石墨电极上从T.Gondii的膜蛋白获得的硅预测肽(Pepb3)中获得的硅藻预测肽(Pepb3)中的固定贡献的免疫球蛋白。间接ELISA确认肽薄荷蛋白的感染和结合特异性。分子建模和仿真显示该肽与表面抗原1(SAG1)结合位点的T Gondii人Fab抗体结合,在分子动态模拟期间留下稳定的复合物,尤其是氢键和疏水相互作用。这种电化学免疫传感器能够使用受感染的小鼠血清样品来区分不同的感染时期,显示选择性和识别感染和未感染的小鼠血清。 (c)2019年由elestvier b.v发布。

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