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Synthesis of Multi-Au-Nanoparticle-Embedded Mesoporous Silica Microspheres as Self-Filtering and Reusable Substrates for SERS Detection

机译:多-Au-纳米粒子嵌入中孔二氧化硅微球作为自过滤和可重复使用的基材的合成SERS检测

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摘要

Surface-enhanced Raman-scattering-based (SERS-based) biosensing in biological fluids is constrained by nonspecific macromolecule adsorptions and disposable property of the SERS substrate. Here, novel multi-Au-nanoparticle-embedded mesoporous silica microspheres (AuNPs/mSiO(2)) were prepared using a one-pot method, which served as reliable substrates for SERS enhancement associated with salient features of self-filtering ability and reusability. The fabrication and physical characterization of AuNPs/mSiO(2) microspheres were discussed, and SERS activity of this novel substrate was investigated by using 4-mercaptobenzoic acid (4-MBA) as Raman probe. The responses of our substrates to Raman intensities exhibited a SERS enhancement factor of 2.01 x 10(7) and high reproducibility (relative standard deviation of 6.13%). Proof-of-concept experiments were designed to evaluate the self-filtering ability of the substrates in bovine serum albumin (BSA) and human serum solution, separately. The results clearly demonstrate that mesoporous SiO2 can serve as a molecular sieve via size exclusion and avoid Raman signal interference of biomacromolecules in biological fluids. Subsequently, feasibility of practical application of AuNPs/mSiO(2) microspheres was assessed by quantitative detection of methotrexate (MTA) in serum. The method exhibited good linearity between 1 and 110 nM with the correlation coefficients of 0.996, which proved that the obtained AuNPs/mSiO(2) microspheres were good SERS substrates for determination of small biomolecules directly in biological fluids without need of manipulating samples. In addition, the substrate maintained its SERS response during multiple cycles, which was evaluated by recording Raman signals for 4-MBA before and after thermal annealing, thereby demonstrating the high thermostability and satisfactory reusability. These results offered the AuNPs/mSiO(2) microspheres attractive advantages in their SERS biosensing.
机译:基于表面增强的拉曼散射(基于SERS的生物化)在生物流体中受到的非特异性大分子吸附和SERS基板的一次性性能约束。这里,使用单罐方法制备新型多Au-纳米粒子嵌入的介孔二氧化硅微球(AUNPS / MSIO(2)),其用作与自过滤能力和可重用性的突出特征相关的SERS增强的可靠基板。讨论了AUNPS / MSIO(2)微球的制备和物理表征,并通过使用4-巯基苯甲酸(4-MBA)作为拉曼探针研究该新型基质的SERs活性。我们的底物与拉曼强度的反应表现出2.01×10(7)和高再现性的SERs增强因子(相对标准偏差为6.13%)。概念证据实验旨在评估牛血清白蛋白(BSA)和人血清溶液中基材的自过滤能力。结果清楚地表明介孔SiO 2可以通过尺寸排除作为分子筛,并避免生物流体中的生物致摩擦的拉曼信号干扰。随后,通过定量检测血清中甲氨蝶呤(MTA)的定量检测来评估AUNPS / MSIO(2)微球的实际应用的可行性。该方法在1至110nm之间表现出良好的线性,具有0.996的相关系数,这证明了所获得的AUNP / MSIO(2)微球是良好的SERS基材,用于直接在生物流体中直接测定生物流体的小生物分子而不需要操纵样品。另外,在多个循环期间,基板将其SERS响应保持在通过在热退火之前和之后记录4-MBA的拉曼信号进行评估,从而显示出高温性和令人满意的可重用性。这些结果提供了AUNPS / MSIO(2)微球在其SERS生物溶胶中具有吸引力的优势。

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