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等离子体硫化铜纳米颗粒实现光学相干断层扫描中的暗对比度。

Plasmonic Copper Sulfide Nanoparticles Enable Dark Contrast in Optical Coherence Tomography.

作者信息

Marin Riccardo, Lifante José, Besteiro Lucas V, Wang Zhiming, Govorov Alexander O, Rivero Fernando, Alfonso Fernando, Sanz-Rodríguez Francisco, Jaque Daniel

机构信息

Fluorescence Imaging Group (FIG), Departamento de Física de Materiales, Facultad de Ciencias, Universidad Autónoma de Madrid, C/ Francisco Tomás y Valiente 7, Madrid, 28049, Spain.

Nanobiology Group, Instituto Ramón y Cajal de Investigación, Sanitaria Hospital Ramón y Cajal, Ctra. De Colmenar Viejo, Km. 9100, Madrid, 28034, Spain.

出版信息

Adv Healthc Mater. 2020 Mar;9(5):e1901627. doi: 10.1002/adhm.201901627. Epub 2020 Jan 24.

DOI:10.1002/adhm.201901627
PMID:31977166
Abstract

Optical coherence tomography (OCT) is an imaging technique affording noninvasive optical biopsies. Like for other imaging techniques, the use of dedicated contrast agents helps better discerning biological features of interest during the clinical practice. Although bright OCT contrast agents have been developed, no dark counterpart has been proposed yet. Herein, plasmonic copper sulfide nanoparticles as the first OCT dark contrast agents working in the second optical transparency window are reported. These nanoparticles virtually possess no light scattering capabilities at the OCT working wavelength (≈1300 nm); thus, they exclusively absorb the probing light, which in turn results in dark contrast. The small size of the nanoparticles and the absence of apparent cytotoxicity support the amenability of this system to biomedical applications. Importantly, in the pursuit of systems apt to yield OCT dark contrast, a library of copper sulfide nanoparticles featuring plasmonic resonances spanning the three optical transparency windows is prepared, thus highlighting the versatility and potential of these systems in light-controlled biomedical applications.

摘要

光学相干断层扫描(OCT)是一种能够提供无创光学活检的成像技术。与其他成像技术一样,在临床实践中使用专用造影剂有助于更好地辨别感兴趣的生物学特征。尽管已经开发出了明亮的OCT造影剂,但尚未提出与之对应的暗造影剂。在此,报道了等离子体硫化铜纳米颗粒作为首个在第二个光学透明窗口工作的OCT暗造影剂。这些纳米颗粒在OCT工作波长(约1300nm)下几乎不具备光散射能力;因此,它们仅吸收探测光,进而产生暗对比度。纳米颗粒的小尺寸和无明显细胞毒性支持了该系统在生物医学应用中的适用性。重要的是,在追求能够产生OCT暗对比度的系统时,制备了一系列具有跨越三个光学透明窗口的等离子体共振的硫化铜纳米颗粒库,从而突出了这些系统在光控生物医学应用中的多功能性和潜力。

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