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Seed-Mediated Synthesis of Tunable-Aspect-Ratio Gold Nanorods for Near-Infrared Photoacoustic Imaging

机译:种子介导的可调谐纵横比金纳米棒的近红外光声成像合成。

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摘要

Tunable-aspect ratio gold nanorods have been synthesized by a modified seed-mediated synthesis method. Ascorbic acid was employed as a shape controller to induce anisotropic growth, which made the aspect ratio of the synthesized gold nanorods range from 8.5 to 15.6. These nanorods possess tunable longitudinal surface plasmon resonance absorption band, covering a broad near-infrared (NIR) range, from ~ 680 to 1100 nm. When modified with thiol-polyethylene glycol (SH-PEG), the synthesized Au nanorods showed excellent biocompatibility and stability, which foreshadowed the great potential of their NIR application as photoacoustic contrast agent. Due to their adjustable absorbance in the NIR, the synthesized Au nanorods could offer stronger contrast (3.1 times to the control group without contrast agent used) and higher signal-noise ratio values (SNR; 5.6 times to the control group) in photoacoustic imaging, both in vitro and in vivo experiments. Our work presented here not only added some novel Au-based photoacoustic contrast agents but also described a possibility of contrast agent preparation covering the whole biological NIR window.
机译:宽高比可调节的金纳米棒已通过改良的种子介导的合成方法合成。抗坏血酸被用作形状控制剂以诱导各向异性生长,这使得合成的金纳米棒的长宽比在8.5至15.6的范围内。这些纳米棒具有可调的纵向表面等离子体激元共振吸收带,覆盖从大约680nm至1100nm的宽范围的近红外(NIR)范围。当用硫醇-聚乙二醇(SH-PEG)改性时,合成的金纳米棒显示出优异的生物相容性和稳定性,这预示了其作为光声造影剂的近红外应用的巨大潜力。由于它们在NIR中的吸光度可调,因此在光声成像中,合成的Au纳米棒可以提供更强的对比度(不使用造影剂的情况下为对照组的3.1倍)和更高的信噪比值(SNR;为对照组的5.6倍),体外和体内实验。我们在这里提出的工作不仅增加了一些新的基于金的光声造影剂,而且还描​​述了制备造影剂覆盖整个生物NIR窗口的可能性。

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