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Intercoupling surface plasmon resonance and diffusion reflection measurements for real-time cancer detection

机译:耦合表面等离振子共振和扩散反射测量可用于实时癌症检测

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Spatial diffusion reflection (DR) measurements of gold nanorods (GNR) were recently suggested as a simple and highly sensitive non-invasive and non-ionizing method for real-time cancer detection. In this paper we demonstrate that wavelength dependent DR measurements enable the spectral red-shift observation of highly concentrated GNR. By conjugating targeting moieties to the GNR, large density of GNR can specifically home onto cancer cells. The inter-particle plasmon resonance pattern of the highly concentrated GNR leads to an extension and a red-shift () in the absorption spectrum of the concentrated GNR. Dark-field microscopy was used in order to measure the expected in different GNR concentrations in vitro. Double-wavelength DR measurements of tissue-like phantoms and tumor bearing mice containing different GNR concentrations are presented. We show that the DR profile of the highly concentrated GNR directly correlate with the spectral extension and red-shift. This presented work suggests that wavelength dependent DR method can serve as a promising tool for real-time superficial tumor detection. ((c) 2013 WILEY-VCH Verlag GmbH & Co. KGaA, Weinheim)
机译:金纳米棒(GNR)的空间扩散反射(DR)测量最近被建议为一种简单且高度灵敏的非侵入性和非电离性实时癌症检测方法。在本文中,我们证明了依赖于波长的DR测量可以实现高浓度GNR的光谱红移观察。通过将靶向部分与GNR结合,大密度的GNR可以特异性地归巢到癌细胞上。高度浓缩的GNR的粒子间等离子体激元共振模式导致浓缩的GNR的吸收光谱扩展和红移()。为了在体外测量不同GNR浓度下的预期浓度,使用了暗视野显微镜。提出了包含不同GNR浓度的组织样体模和荷瘤小鼠的双波长DR测量。我们表明,高度浓缩的GNR的DR谱与光谱扩展和红移直接相关。这项工作表明波长依赖的DR方法可以作为一种有前途的工具,用于实时浅表肿瘤检测。 ((c)2013 WILEY-VCH Verlag GmbH&Co.KGaA,Weinheim)

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