Imaging Research Laboratories, Robarts Research Institute, Western University, London, ON, Canada N6A 5B7.
Department of Medical Biophysics, Western University, London, ON, Canada N6A 5C1.
Contrast Media Mol Imaging. 2017 Nov 15;2017:7368384. doi: 10.1155/2017/7368384. eCollection 2017.
Micro-computed tomography (micro-CT) facilitates the visualization and quantification of contrast-enhanced microvessels within intact tissue specimens, but conventional preclinical vascular contrast agents may be inadequate near dense tissue (such as bone). Typical lead-based contrast agents do not exhibit optimal X-ray absorption properties when used with X-ray tube potentials below 90 kilo-electron volts (keV). We have developed a high-atomic number lanthanide (erbium) contrast agent, with a K-edge at 57.5 keV. This approach optimizes X-ray absorption in the output spectral band of conventional microfocal spot X-ray tubes. Erbium oxide nanoparticles (nominal diameter < 50 nm) suspended in a two-part silicone elastomer produce a perfusable fluid with viscosity of 19.2 mPa-s. Ultrasonic cavitation was used to reduce aggregate sizes to <70 nm. Postmortem intact mice were perfused to investigate the efficacy of contrast agent. The observed vessel contrast was >4000 Hounsfield units, and perfusion of vessels < 10 m in diameter was demonstrated in kidney glomeruli. The described new contrast agent facilitated the visualization and quantification of vessel density and microarchitecture, even adjacent to dense bone. Erbium's K-edge makes this contrast agent ideally suited for both single- and dual-energy micro-CT, expanding potential preclinical research applications in models of musculoskeletal, oncological, cardiovascular, and neurovascular diseases.
微计算机断层扫描(micro-CT)有助于可视化和量化完整组织标本内增强的微血管,并定量分析,但其在致密组织(如骨骼)附近的效果往往不尽人意。常规的临床前血管造影剂在 X 射线管电压低于 90 千电子伏特(keV)时,无法展现出最佳的 X 射线吸收特性。我们研发了一种高原子序数的镧系元素(铒)造影剂,其 K 边位于 57.5keV。这种方法优化了常规微焦点 X 射线管输出光谱带内的 X 射线吸收。悬浮在双组分硅酮弹性体中的氧化铒纳米颗粒(名义直径<50nm)可产生具有 19.2mPa-s 粘度的可灌注流体。采用超声空化将聚集体尺寸减小至<70nm。对死后完整的小鼠进行了灌注以研究造影剂的效果。观察到的血管对比度超过 4000 亨氏单位,并且在肾脏肾小球中显示了直径<10μm 的血管的灌注。所描述的新型造影剂即使在致密骨附近也能促进血管密度和微血管结构的可视化和定量分析。铒的 K 边使这种造影剂非常适合单能和双能 micro-CT,从而扩展了在肌肉骨骼、肿瘤学、心血管和神经血管疾病模型中的潜在临床前研究应用。