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Sensitive surface enhanced Raman scattering multiplexed detection of matrix metalloproteinase 2 and 7 cancer markers

机译:敏感表面增强拉曼散射多重检测基质金属蛋白酶2和7癌症标志物

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摘要

A surface enhanced Raman spectroscopy (SERS) based platform was developed for sensitive multiplexed detection of matrix metalloproteinases (MMP) (MMP-2 and MMP-7) with low limit of detection and high specificity. Detection is based on the virtue of enzymatic reaction where a peptide can be cleaved only by its corresponding enzyme. The platform comprises two components, a specialized SERS-based bimetallic-film-over-nanosphere (BMFON) substrate and gold nanoparticles (AuNPs). The two components were functionalized such that binding between the two would occur through biotin-avidin-biotin complexation. Binding is hindered by MMP peptide chains conjugated onto the surfaces of the substrate and AuNPs, and can be removed only by cleaving the peptide chains with corresponding enzymes. Since AuNP binding sites become free after the peptides are cleaved, the number of binding sites for AuNPs onto the substrate would increase. By tagging the AuNPs, concentrations of MMP-specific enzymes can be quantified through examining intensities of signature SERS peaks of the tags. This cleave-and-bind mechanism was first validated by individual detection and quantification of MMP-2 and MMP-7. The platform was demonstrated to be able to sensitively detect concentrations of specific enzymes ranging from 1 ng/mL to 40 µg/mL, with close correlation between SERS intensity and concentrations. Finally, the multiplexed detection of MMP-2 and MMP-7 was demonstrated. The multiplexity of this platform provides a robust way to analyze diseases associated with MMP-2 and MMP-7 enzymes. Our work can be further developed as a clinical diagnostic tool to detect other MMP proteinase in bio-fluids samples, widening the number of biomarkers needed to characterize diseases better.
机译:开发了基于表面增强拉曼光谱(SERS)的平台,用于基质金属蛋白酶(MMP)(MMP-2和MMP-7)的灵敏多重检测,检测限低,特异性高。检测是基于酶促反应的,其中肽只能被其相应的酶裂解。该平台包括两个组件,一个专门的基于SERS的纳米双金属膜(BMFON)衬底和金纳米颗粒(AuNPs)。对这两个组分进行了功能化,使得两者之间的结合将通过生物素-亲和素-生物素复合而发生。结合被结合在底物和AuNPs表面上的MMP肽链所阻碍,并且只能通过用相应的酶裂解肽链来除去。由于在肽被切割后AuNP结合位点变得自由,所以AuNPs在底物上的结合位点的数目将增加。通过标记AuNP,可以通过检查标记的签名SERS峰强度来定量MMP特异性酶的浓度。首先通过单独检测和定量MMP-2和MMP-7来验证这种裂解和结合机制。证明该平台能够灵敏地检测从1 ng / mL到40 µg / mL范围内的特定酶的浓度,并且SERS强度和浓度之间密切相关。最后,证明了MMP-2和MMP-7的多重检测。该平台的多重性为分析与MMP-2和MMP-7酶相关的疾病提供了一种可靠的方法。我们的工作可以进一步发展为一种检测生物流体样品中其他MMP蛋白酶的临床诊断工具,从而扩大了更好地表征疾病所需的生物标记物的数量。

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