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Rational design of a chalcogenopyrylium-based surface-enhanced resonance Raman scattering nanoprobe with attomolar sensitivity

机译:具有原子摩尔灵敏度的硫属吡啶鎓基表面增强共振拉曼散射纳米探针的合理设计

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High sensitivity and specificity are two desirable features in biomedical imaging. Raman imaging has surfaced as a promising optical modality that offers both. Here we report the design and synthesis of a group of near-infrared absorbing 2-thienyl-substituted chalcogenopyrylium dyes tailored to have high affinity for gold . When adsorbed onto gold nanoparticles, these dyes produce biocompatible SERRS nanoprobes with attomolar limits of detection amenable to ultrasensitive in vivo multiplexed tumour and disease marker detection.
机译:高灵敏度和特异性是生物医学成像中的两个理想特征。拉曼成像已经浮出水面,可以同时提供这两种形式。在这里,我们报道了一组设计成对金具有高亲和力的近红外吸收性2-噻吩基取代硫族吡啶鎓染料的设计与合成。当吸附到金纳米颗粒上时,这些染料会产生具有生物相容性的SERRS纳米探针,其检出限达到适用于超灵敏体内多重肿瘤和疾病标志物检测的检测极限。

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