首页> 外文期刊>Biosensors & Bioelectronics: The International Journal for the Professional Involved with Research, Technology and Applications of Biosensers and Related Devices >A novel platform for high sensitivity determination of PbP2a based on gold nanoparticles composited graphitized mesoporous carbon and doxorubicin loaded hollow gold nanospheres
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A novel platform for high sensitivity determination of PbP2a based on gold nanoparticles composited graphitized mesoporous carbon and doxorubicin loaded hollow gold nanospheres

机译:基于金纳米粒子复合石墨化中孔碳和阿霉素空心金纳米球的高灵敏度测定PbP2a的新平台

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摘要

Gold nanoparticles composite graphitized mesoporous carbon nanoparticles (GMCs@AuNPs) bio-composite with the signal amplification capability was successfully synthesized for use in an immunoassay for penicillin binding protein 2 a (PbP2a). The polyamidoamine (PAMAM) dendrimers were first electrodeposited onto the Au electrode can greatly increase the amount of the captured antibodies. Protein A was used to properly orientate immobilized antibody against PbP2a, which strongly improved specificity of the antigen-antibody binding. Hollow gold nanospheres (HGNPs) as effective nanocarriers have been synthesized by sacrificial galvanic replacement of cobalt nanoparticles capable of encapsulating doxorubicin (Dox). The obtained HGNPs@Dox bionanocomposite was used for further loading of detection antibody (Ab(2)) to form the HGNPs@Dox@Ab(2) bioconjugate. Then, the differential pulse voltammetric signals related to the concentration of PbP2a for Dox could be detected, and the immunosensor exhibited a detection limit as low as 0.65 pg mL(-1) (at an S/N ratio of 3). The proposed method with an excellent differentiation ability showed high sensitivity and specificity. The morphologies and electrochemistry properties of the composites were investigated by scanning electron microscopy, electrochemical characterization, UV-visible absorption spectroscopy, fluorescence spectrophotometer and Malvern laser particle size analyzer, respectively. In addition, the basic approach described here would be applicable towards developing biodetection assays against other important targets. Moreover, the bioconjugate of HGNPs@Dox is also a promising pattern to delivery Dox in vivo for anticancer therapy. (C) 2015 Elsevier B.V. All rights reserved.
机译:成功合成了具有信号放大功能的金纳米颗粒复合石墨化介孔碳纳米颗粒(GMCs @ AuNPs)生物复合材料,用于青霉素结合蛋白2a(PbP2a)的免疫分析。首先将聚酰胺酰胺(PAMAM)树状聚合物电沉积到Au电极上,可以大大增加捕获抗体的量。蛋白A用于正确定向固定化的针对PbP2a的抗体,从而大大提高了抗原抗体结合的特异性。中空金纳米球(HGNPs)作为有效的纳米载体,是通过牺牲电流置换能够封装阿霉素(Dox)的钴纳米颗粒而合成的。将获得的HGNPs @ Dox离子纳米复合材料用于进一步加载检测抗体(Ab(2)),以形成HGNPs @ Dox @ Ab(2)生物缀合物。然后,可以检测到与Dox的PbP2a浓度有关的差分脉冲伏安信号,并且该免疫传感器的检测限低至0.65 pg mL(-1)(S / N比为3)。拟议的方法具有出色的分化能力显示出高灵敏度和特异性。分别通过扫描电子显微镜,电化学表征,紫外可见吸收光谱,荧光分光光度计和马尔文激光粒度分析仪研究了复合材料的形貌和电化学性能。另外,此处描述的基本方法将适用于针对其他重要目标进行生物检测分析。此外,HGNPs @ Dox的生物结合物也是一种有望在体内递送Dox用于抗癌治疗的模式。 (C)2015 Elsevier B.V.保留所有权利。

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