聚乙二醇化阿霉素-金复合物:从纳米载体到潜在的生物传感器中间体

Valentina Melani , Maroua Ben Haddada , Hanane Moustaoui , Jessem Landoulsi , Nadia Djaker , Marc Lamy de la Chapelle , Jolanda Spadavecchia
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引用次数: 10

摘要

我们报道了一种合成杂化金纳米结构的原始方法,其中阿霉素(DOX)与聚乙二醇二酸(PEG-COOH)混合产生原始杂化金纳米载体(DOX in PEG-AuNPs)。在这项工作中,我们研究了DOX In PEG-AuNPs通过插入过程中的灵敏石英晶体耗散微量天平(QCM-D)检测杂交过程扩增的能力。通过在镀金石英晶体传感器上自组装单层β巯基乙胺(半胱胺)来实现传感层,该传感器由与氨基探针寡核苷酸共价连接的刚性同源双功能交联剂1,4-苯二异硫氰酸酯(PDITC)组成。通过在8µM至20 nM范围内的QCM表征,我们证明了DOX在PEG-AuNPs DNA中的高特异性,检测限(LOD)为9 nM。这一结果对于开发灵敏有效的基于纳米颗粒的生物传感器来量化生理液体中的小生物分子浓度是非常有希望的。这些结果为实现一类新的纳米载体开辟了可能性,该载体将适用于不同的生物医学应用,如成像、靶向和药物递送。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Pegylated doxorubicin gold complex: From nanovector to potential intercalant agent for biosensor applications

We report an original approach to synthesize hybrid gold nanostructures in which doxorubicin (DOX), mixed to Poliethylenglycole diacid (PEG-COOH) led to original hybrid gold nanovector (DOX IN PEG AuNPs). In this work, we investigate the ability of DOX IN PEG-AuNPs to detect the amplification of the hybridization process by a sensitive Quartz crystal Microbalance with dissipation (QCM-D) by intercalation process. The sensing layer was carried out by self-assembled monolayer of β mercaptoethylamine (cysteamine) on gold-coated quartz crystal sensor composed by a rigid homobifunctional cross-linker 1,4 phenilenediisothiocyanate (PDITC) linked covalently with amino-probe oligonucleotides. By QCM characterization in the range from 8 µM to 20 nM, we demonstrate high specificity of DOX IN PEG-AuNPs-DNA with a limit of detection (LOD) of 9 nM. This result is very promising for development of sensitive and effective nanoparticle-based biosensor for quantifying small biomolecules concentration in physiological liquids. These results open a possibility to realize a new class of nanovector which will be tailored for different biomedical application, such as imaging, targeting and drugs delivery.

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