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Plasmon-resonant nanorods as multimodal agents for two-photon luminescent imaging and photothermal therapy

机译:等离子体共振纳米棒作为两光子发光成像和光热疗法的多峰剂

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Plasmon-resonant gold nanorods have outstanding potential as multifunctional agents for image-guided therapies. Nanorods have large absorption cross sections at near-infrared (NIR) frequencies, and produce two-photon luminescence (TPL) when excited by fs-pulsed laser irradiation. The TPL signals can be detected with single-particle sensitivity, enabling nanorods to be imaged in vivo while passing through blood vessels at subpicomolar concentrations. Furthermore, cells labeled with nanorods become highly susceptible to photothermal damage when irradiated at plasmon resonance, often resulting in a dramatic blebbing of the cell membrane. However, the straightforward application of gold nanorods for cell-specific labeling is obstructed by the presence of CTAB, a cationic surfactant carried over from nanorod synthesis which also promotes their nonspecific uptake into cells. Careful exchange and replacement of CTAB can be achieved by introducing oligoethyleneglycol (OEG) units capable of chemisorption onto nanorod surfaces by in situ dithiocarbamate formation, a novel method of surface functionalization. Nanorods with a dense coating of methyl-terminated OEG chains are shielded from nonspecific cell uptake, whereas nanorods functionalized with folate-terminated OEG chains accumulate on the surface of tumor cells overexpressing their cognate receptor, with subsequent delivery of photoinduced cell damage at low laser fluence.
机译:等离子体 - 谐振金纳米棒具有突出的潜力作为用于图像引导疗法的多功能剂。纳米棒在近红外(NIR)频率下具有大的吸收横截面,并且在由FS脉冲激光照射激发时产生双光子发光(TPL)。可以通过单颗粒敏感性检测TPL信号,使纳米棒能够在体内成像,同时通过亚磷莫马尔浓度的血管。此外,当在等离子体共振照射时,用纳米棒标记的细胞变得高易受光热损伤的影响,通常导致细胞膜的戏剧性膨胀。然而,通过CTAB的存在,通过CTAB的存在阻碍了用于细胞特异性标记的链纳米棒的直接施加,该阳离子表面活性剂也促进其非特异性摄取到细胞中。通过在原位二硫酸盐形成,通过原位二硫酸酯形成,通过将能够将化学吸附到纳米棒表面上的寡替乙二醇(OEG)单元,一种新的表面官能化。具有致密涂层的甲基封端的OEG链涂层的纳米棒由非特异性细胞吸收屏蔽,而用叶酸封端的OEG链官能化的纳米棒积聚在过表达其同源受体的肿瘤细胞表面上,随后在低激光器流动下递送光态细胞损伤。

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