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Au nanostar nanoparticle as a bio-imaging agent and its detection and visualization in biosystems

机译:Au nanostar纳米粒子作为生物成像剂及其在生物系统中的检测和可视化

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摘要

In the present work, we report the imaging of Au nanostars nanoparticles (AuNSt) and their multifunctional applications in biomedical research and theranostics applications. Their optical and spectroscopic properties are considered for the multimodal imaging purpose. The AuNSt are prepared by the seed-meditated method and characterized for use as an agent for bio-imaging. To demonstrate imaging with AuNSt, penetration and localization in different biological models such as cancer cell culture (A549 lung carcinoma cell), 3D tissue model (multicellular tumor spheroid on the base of human oral squamous carcinoma cell, SAS) and murine skin tissue are studied. AuNSt were visualized using fluorescence lifetime imaging (FLIM) at two-photon excitation with a pulse duration 140 fs, repetition rate 80 MHz and 780 nm wavelength femtosecond laser. Strong emission of AuNSt at two-photon excitation in the near infrared range and fluorescence lifetime less than 0.5 ns were observed. It allows using AuNSt as a fluorescent marker at two-photon fluorescence microscopy and lifetime imaging (FLIM). It was shown that AuNSt can be observed inside a thick sample (tissue and its model). This is the first demonstration using AuNSt as an imaging agent for FLIM at two-photon excitation in biosystems. Increased scattering of near-infrared light upon excitation of AuNSt surface plasmon oscillation was also observed and rendered using a possible contrast agent for optical coherence tomography (OCT). AuNSt detection in a biological system using FLIM is compared with OCT on the model of AuNSt penetrating into animal skin. The AuNSt application for multimodal imaging is discussed.
机译:在目前的工作中,我们报告了Au Nanostars纳米粒子(Aunst)的成像及其在生物医学研究和Theranostics应用中的多功能应用。他们的光学和光谱性能被认为是多式化成像目的。阳离子由种子冥想的方法制备,其特征用作生物成像的试剂。在研究不同生物模型中的阳痿和定位等癌细胞培养(A549肺癌细胞),3D组织模型(人口腔鳞状癌基质基部的多细胞肿瘤球体,SAS)和鼠皮肤组织中的血液模型中的渗透和定位成像。在双光子激发下使用脉冲持续时间140fs,重复率80MHz和780nm波长飞秒激光器,使用荧光寿命成像(FLIM)可视化。观察到在近红外范围和荧光寿命小于0.5ns的近光子激发中强烈排放阳离子。它允许在双光子荧光显微镜和寿命成像(FLIM)下用AUNST作为荧光标记物。结果表明,在厚的样品(组织及其模型)内可以观察到肛门。这是使用AUNST作为生物系统中的双光子激发的成像剂的第一次演示。还使用可能的光学相干断层扫描(OCT)的可能对比剂,观察到近红外光散射近红外光散射。将使用Flim的生物系统中的Aunst检测与OCT在渗透到动物皮肤的模型上进行比较。讨论了多式联运成像的阳痿应用。

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