University of Prince Edward Island, Department of Physics, 550 University Avenue, Charlottetown, Prince Edward Island C1A 4P3, Canada.
J Biomed Opt. 2013 Jul;18(7):077005. doi: 10.1117/1.JBO.18.7.077005.
Gold nanoparticles can be used as molecular contrast agents binding specifically to cancer sites and thus delineating tumor regions. Imaging gold nanoparticles deeply embedded in tissues with optical techniques possesses significant challenges due to multiple scattering of optical photons that blur the obtained images. Both diagnostic and therapeutic applications can benefit from a minimally invasive technique that can identify, localize, and quantify the payloads of gold nanoparticles deeply embedded in biological tissues. An optical radiance technique is applied to map localized inclusions of gold nanorods in 650- to 900-nm spectral range in a porcine phantom that mimics prostate geometry. Optical radiance defines a variation in the angular density of photons impinging on a selected point in the tissue from various directions. The inclusions are formed by immersing a capillary filled with gold nanorods in the phantom at increasing distances from the detecting fiber. The technique allows the isolation of the spectroscopic signatures of the inclusions from the background and identification of inclusion locations in the angular domain. Detection of ∼4×1010 gold nanoparticles or 0.04 mg Au/mL (detector-inclusion separation 10 mm, source-detector separation 15 mm) in the porcine tissue is demonstrated. The encouraging results indicate a promising potential of radiance spectroscopy in early prostate cancer diagnostics with gold nanoparticles.
金纳米粒子可用作分子对比剂,特异性地与癌症部位结合,从而描绘肿瘤区域。由于光光子的多次散射会使获得的图像模糊,因此使用光学技术对深嵌入组织中的金纳米粒子进行成像具有很大的挑战性。诊断和治疗应用都可以从微创技术中受益,该技术可以识别、定位和量化深嵌入生物组织中的金纳米粒子的有效载荷。光辐射技术用于在模拟前列腺几何形状的猪模型中,对 650 至 900nm 光谱范围内局部存在的金纳米棒进行成像。光辐射定义了在组织中从各个方向撞击选定点的光子角密度的变化。通过将充满金纳米棒的毛细管浸入从检测光纤增加距离的模型中形成包含物。该技术允许从背景中分离包含物的光谱特征,并在角域中识别包含物的位置。在猪组织中检测到了约 4×1010 个金纳米粒子或 0.04 mgAu/mL(探测器-包含物分离 10mm,源-探测器分离 15mm)。令人鼓舞的结果表明,光辐射光谱法在使用金纳米粒子进行早期前列腺癌诊断方面具有很大的应用潜力。