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Gold nanoshell-based photoacoustic imaging application in biomedicine

机译:基于金纳米孔的光声成像在生物医学中的应用

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Gold nanoshell was used as a new contrast-enhancing agent for photoacoustic tomography. Gold nanoshells are concentric sphere nanoparticles consisting of a dielectric silica core and a gold shell. By varying the relative thickness of the core and shell layers, the plasmon-derived optical resonance of gold can be dramatically shifted in wavelength from the visible region into the infrared over a wavelength range that spans the region of highest physiological transmissivity. In this experimentation, nanoshells with 100 nm silica core diameter and 20 nm gold shells thickness has an optical absorption peak at 800nm and deep penetrating pulse laser of 800 nm were employed to image the vasculature architecture of a rat brain in vivo. Here we accurately imaged rat brain structures with gold nanoshell contrast agents. We also mapped the distribution of gold nanoshell in the in vivo rat brain. This experiment results demonstrated that nanoshell accumulation is greatly enhanced NIR optical contrast in the vasculature. Nanoshell-based photoacoustic imaging technique would be applied in biomedicine extensively. The further development of photoacoustic tomography to characterize and monitor the accumulation of nanoshells in vivo will be applied to the detection of tumors in situ as well as to guiding nanoshell-based thermal tumor therapy. Gold nanoshell can potentially provide an accurate noninvasive method, use as imaging contrast agents, to employ in functional photoacoustic at molecular and cellular level.
机译:金纳米壳被用作光声断层扫描的新对比增强剂。金纳米孔是由介电二氧化硅核和金壳组成的同心球纳米颗粒。通过改变芯和壳层的相对厚度,金的等离子体导出的金色共振可以从波长从可见区域的波长转移到跨越最高生理透射率的波长范围内的红外。在该实验中,具有100nm二氧化硅芯直径和20nm金壳厚度的纳米壳在800nm处具有光学吸收峰,并且使用800nm的深度渗透脉冲激光器以在体内映射大鼠脑的血管系统结构。在这里,我们准确地成像用金纳米孔造影剂的大鼠脑结构。我们还映射了在体内大鼠大脑中金纳米籽的分布。该实验结果表明,纳米孔积累在脉管系统中具有大大提高了NIR光学对比。基于纳米孔的光声成像技术将广泛应用于生物医学。光声断层扫描的进一步发展,表征和监测体内纳米酚的积累将应用于原位检测肿瘤以及引导基于纳米的热肿瘤疗法。金纳米壳可以提供一种准确的非侵入性方法,用作成像造影剂,在分子和细胞水平下采用功能性光声。

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