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Pattern of distribution and kinetics of accumulation of gold nanorods in mouse spleen

机译:小鼠脾脏金纳米棒积累的分布与动力学

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Gold nanorods (GNRs) offer a tunable optical absorption in the near infra-red wavelength region due to their plasmon resonance, which results in strong photoacoustic (PA) signal and make them suitable as contrast agent by means of PA imaging. The aim of this study was to examine the performance of synthesized polyethilene glicol (PEG)-GNRs as contrast agent for in vivo PA imaging and to evaluate their accumulation and distribution real time. Two-three month old FVB female mice were enrolled for the study, a bolus of 200μL of synthesized PEG-GNRs (53 nm length and 11 nm axial diameter, plasmon resonance at 840 nm, 1 mM Au concentration) solution was injected intravenously and detected with PA imaging. The accumulation of GNRs in the spleen was studied by means of the amplitude dynamic variation of the PA signal during time. GNRs contrast was clearly distinguished from endogenous background thanks to the nanoparticle spectroscopic specificity. Our results suggest that PA imaging could allow an efficient and non invasive tool for in vivo detection of GNRs content and for the assessment of the kinetic parameters in target organs. The coregistration of μ-ultrasound and PA imaging is crucial for the real time evaluation of the GNRs distribution in different organs.
机译:金纳米棒(GNRS)由于其等离子体共振而在近红外波长区域中提供可调谐光学吸收,这导致强光声(PA)信号,并通过PA成像使其适合作为造影剂。本研究的目的是研究合成的聚乙烯GLICOL(PEG)-GNR作为体内PA成像的造影剂的性能,并在实时评估其积累和分布。注册了两三个月的FVB雌性小鼠,静脉注射了200μl合成的PEG-GNR(53nm长度和11nm,等离子体共振,在840nm,1mM Au浓度)溶液中的推注用pa成像。通过在时间内PA信号的幅度动态变化来研究脾脏中GNR的累积。由于纳米颗粒光谱特异性,GNRS对比度明确区分了内源性背景。我们的研究结果表明,PA成像可以允许高效和非侵入性工具用于体内检测GNR含量和评估靶器官中的动力学参数。 μ超声和PA成像的核心试卷对于不同器官中GNR分布的实时评估至关重要。

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