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Three-Photon Luminescence of Gold Nanorods and Its Applications for High Contrast Tissue and Deep In Vivo Brain Imaging

机译:金纳米棒的三光子发光及其在高对比度组织和体内深部脑成像中的应用

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Gold nanoparticles can be used as contrast agents for bio-imaging applications. Here we studied multi-photon luminescence (MPL) of gold nanorods (GNRs), under the excitation of femtosecond (fs) lasers. GNRs functionalized with polyethylene glycol (PEG) molecules have high chemical and optical stability, and can be used as multi-photon luminescent nanoprobes for deep in vivo imaging of live animals. We have found that the depth of in vivo imaging is dependent upon the transmission and focal capability of the excitation light interacting with the GNRs. Our study focused on the comparison of MPL from GNRs with two different aspect ratios, as well as their ex vivo and in vivo imaging effects under 760 nm and 1000 nm excitation, respectively. Both of these wavelengths were located at an optically transparent window of biological tissue (700-1000 nm). PEGylated GNRs, which were intravenously injected into mice via the tail vein and accumulated in major organs and tumor tissue, showed high image contrast due to distinct three-photon luminescence (3PL) signals upon irradiation of a 1000 nm fs laser. Concerning in vivo mouse brain imaging, the 3PL imaging depth of GNRs under 1000 nm fs excitation could reach 600 μm, which was approximately 170 μm deeper than the two-photon luminescence (2PL) imaging depth of GNRs with a fs excitation of 760 nm.
机译:金纳米颗粒可以用作生物成像应用的造影剂。在这里,我们研究了飞秒(fs)激光激发下金纳米棒(GNR)的多光子发光(MPL)。用聚乙二醇(PEG)分子功能化的GNR具有很高的化学和光学稳定性,可用作多光子发光纳米探针,用于活体动物的深层体内成像。我们已经发现,体内成像的深度取决于与GNR相互作用的激发光的透射和聚焦能力。我们的研究集中于比较具有两种不同长宽比的GNR的MPL,以及它们分别在760 nm和1000 nm激发下的离体和体内成像效果。这两个波长都位于生物组织的光学透明窗口(700-1000 nm)。聚乙二醇化的GNR通过尾静脉静脉注射到小鼠体内并积累在主要器官和肿瘤组织中,由于在1000 nm fs激光照射后产生独特的三光子发光(3PL)信号,因此显示出高图像对比度。关于体内小鼠脑成像,在1000 nm fs激发下GNR的3PL成像深度可以达到600μm,比在760 nm fs激发下的GNRs的双光子发光(2PL)成像深度深170μm。

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