National Health Research Institutes, Division of Medical Engineering Research, Zhunan, Miaoli Country, Taiwan.
J Biomed Opt. 2010 Jan-Feb;15(1):016010. doi: 10.1117/1.3292574.
Photoacoustic tomography (PAT) has garnered much attention for its high contrast and excellent spatial resolution of perfused tissues. Gold nanorods (GNRs) have been employed to further enhance the imaging contrast of PAT. However, the photon fluences typically needed for PA wave induction often also result in GNR shape changes that significantly reduce the efficiency of acoustic wave generation. In this work, we propose, synthesize, and evaluate amorphous silica-coated gold nanorods (GNR-Si) in an effort to improve contrast agent stability and ameliorate efficiency loss during photoacoustic (PA) wave induction. TEM and optical absorption spectra measurements of GNR and GNR-Si show that encasing GNRs within amorphous silica provides substantial protection of nanorod conformation from thermal deformation. PA signals generated by GNR-Si demonstrate considerably greater resistance to degradation of signal intensity with repetitive pulsing than do uncoated GNRs, thereby enabling much longer, high-contrast imaging sessions than previously possible. The prolongation of high-contrast imaging, and biocompatibility and easy surface functionalization for targeting ligands afforded by amorphous silica, suggest GNR-Si to be potentially significant for the clinical translation of PAT.
光声断层扫描(PAT)因其对灌注组织的高对比度和优异的空间分辨率而备受关注。金纳米棒(GNR)已被用于进一步提高 PAT 的成像对比度。然而,通常用于诱导 PA 波的光子通量也会导致 GNR 形状发生变化,从而显著降低声波产生的效率。在这项工作中,我们提出、合成并评估了非晶态二氧化硅包覆的金纳米棒(GNR-Si),以努力提高造影剂的稳定性并减轻光声(PA)波诱导过程中的效率损失。GNR 和 GNR-Si 的 TEM 和光学吸收光谱测量表明,将 GNR 封装在非晶态二氧化硅中可提供对纳米棒构象的热变形的实质性保护。与未包覆的 GNR 相比,GNR-Si 产生的 PA 信号在重复脉冲时对信号强度的降解具有更大的抵抗力,从而能够实现比以前更长时间、更高对比度的成像。高对比度成像时间的延长、非晶态二氧化硅提供的生物相容性和靶向配体的易于表面功能化,表明 GNR-Si 有可能在 PAT 的临床转化中具有重要意义。