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Gold Nanostars Bioconjugation for Selective Targeting and SERS Detection of Biofluids

机译:用于选择性靶向和生物流体检测的金纳略的生物谐波

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摘要

Gold nanoparticles (AuNPs) show physicochemical and optical functionalities that are of great interest for spectroscopy-based detection techniques, and especially for surface enhanced Raman spectroscopy (SERS), which is capable of providing detailed information on the molecular content of analysed samples. Moreover, the introduction of different moieties combines the interesting plasmonic properties of the AuNPs with the specific and selective recognition capabilities of the antibodies (Ab) towards antigens. The conjugation of biomolecules to gold nanoparticles (AuNPs) has received considerable attention for analysis of liquid samples and in particular biological fluids (biofluids) in clinical diagnostic and therapeutic field. To date, gold nanostars (AuNSts) are gaining more and more attention as optimal enhancers for SERS signals due to the presence of sharp branches protruding from the core, providing a huge number of “hot spots”. To this end, we focused our attention on the design, optimization, and deep characterization of a bottom up-process for (i) AuNPs increasing stabilization in high ionic strength buffer, (ii) covalent conjugation with antibodies, while (iii) retaining the biofunctionality to specific tag analyte within the biofluids. In this work, a SERS-based substrate was developed for the recognition of a short fragment (HA) of the hemagglutinin protein, which is the major viral antigen inducing a neutralizing antibody response. The activity and specific targeting with high selectivity of the Ab-AuNPs was successfully tested in transfected neuroblastoma cells cultures. Then, SERS capabilities were assessed measuring Raman spectra of HA solution, thus opening interesting perspective for the development of novel versatile highly sensitive biofluids sensors.
机译:金纳米颗粒(AUNP)显示出对基于光谱的检测技术的兴趣很大的物理化学和光学功能,特别是对于表面增强的拉曼光谱(SERS),其能够提供有关分析样品的分子含量的详细信息。此外,不同部分的引入将AUNP的有趣等离子体特性与抗原抗原(AB)的特异性和选择性识别能力相结合。生物分子与金纳米颗粒(AUNP)的缀合在临床诊断和治疗田中的液体样品和特定的生物流体(生物流体)分析了相当大的关注。迄今为止,由于存在从核心突出的尖锐分支的存在,金纳盘(Aunsts)作为SERS信号的最佳增强剂,因此获得了越来越多的关注,因此提供了大量的“热点”。为此,我们专注于我们的注意力对(i)高离子强度缓冲液中稳定性的设计,优化和深度表征,(ii)与抗体的共价缀合,而(iii)保留生物流体中的特定标签分析物的生物官能团。在这项工作中,开发了基于SERS的基质,用于识别血凝素蛋白的短片段(HA),这是诱导中和抗体应答的主要病毒抗原。在转染的神经母细胞瘤细胞培养物中成功地测试了具有高选择性的活性和特异性靶向。然后,评估HA解决方案的测量Raman光谱的SERS能力,从而开启了新型多功能高敏感生物流体传感器的有趣视角。

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