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Latex-protein complexes from an acute phase recombinant antigen of Toxoplasma gondii for the diagnosis of recently acquired toxoplasmosis

机译:刚地弓形虫急性期重组抗原的乳胶蛋白复合物用于诊断最近获得的弓形虫病

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The synthesis and characterization of latex-protein complexes (LPC), from the acute phase recombinant antigen P35 (P35Ag) of Toxoplasma gondii and "core-shell" carboxylated or polystyrene (PS) latexes (of different sizes and charge densities) are considered, with the aim of producing immunoagglutination reagents able to detect recently acquired toxoplasmosis. Physical adsorption (PA) and chemical coupling (CC) of P35Ag onto latex particles at different pH were investigated. Greater amounts of adsorbed protein were obtained on PS latexes than on carboxylated latexes, indicating that hydrophobic forces govern the interactions between the protein and the particle surface. In the CC experiments, the highest amount of bound protein was obtained at pH 6, near the isoelectric point of the protein (IP = 6.27). At this pH, it decreased both the repulsion between particle surface and protein, and the repulsion between neighboring molecules. The LPC were characterized and the antigenicity of the P35Ag protein coupled on the particles surface was evaluated by Enzyme-Linked ImmunoSorbent Assay (ELISA). Results from ELISA showed that the P35Ag coupled to the latex particles surface was not affected during the particles sensitization by PA and CC and the produced LPC were able to recognize specific anti-P35Ag antibodies present in the acute phase of the disease. (C) 2014 Elsevier B.V. All rights reserved.
机译:考虑了由弓形虫的急性期重组抗原P35(P35Ag)和“核壳”羧化或聚苯乙烯(PS)乳胶(大小和电荷密度不同)合成和表征的乳胶蛋白复合物(LPC),目的是生产能够检测最近获得的弓形虫病的免疫凝集试剂。研究了不同pH条件下P35Ag在乳胶颗粒上的物理吸附(PA)和化学偶联(CC)。在PS乳胶上比在羧化乳胶上获得更多的吸附蛋白,这表明疏水力决定了蛋白与颗粒表面之间的相互作用。在CC实验中,在pH值为6的蛋白质的等电点附近(IP = 6.27),可获得最大量的结合蛋白。在此pH值下,它既减少了颗粒表面与蛋白质之间的排斥力,又减少了相邻分子之间的排斥力。表征LPC,并通过酶联免疫吸附测定(ELISA)评估偶联在颗粒表面上的P35Ag蛋白的抗原性。 ELISA的结果表明,在PA和CC致敏颗粒过程中,与乳胶颗粒表面偶联的P35Ag不受影响,产生的LPC能够识别疾病急性期存在的特异性抗P35Ag抗体。 (C)2014 Elsevier B.V.保留所有权利。

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