Sancey Lucie, Motto-Ros Vincent, Kotb Shady, Wang Xiaochun, Lux François, Panczer Gérard, Yu Jin, Tillement Olivier
ILM-FENNEC UMR 5306, CNRS - Université Lyon 1;
ILM-PUBLI UMR 5306, CNRS - Université Lyon 1.
J Vis Exp. 2014 Jun 18(88):51353. doi: 10.3791/51353.
Emission spectroscopy of laser-induced plasma was applied to elemental analysis of biological samples. Laser-induced breakdown spectroscopy (LIBS) performed on thin sections of rodent tissues: kidneys and tumor, allows the detection of inorganic elements such as (i) Na, Ca, Cu, Mg, P, and Fe, naturally present in the body and (ii) Si and Gd, detected after the injection of gadolinium-based nanoparticles. The animals were euthanized 1 to 24 hr after intravenous injection of particles. A two-dimensional scan of the sample, performed using a motorized micrometric 3D-stage, allowed the infrared laser beam exploring the surface with a lateral resolution less than 100 μm. Quantitative chemical images of Gd element inside the organ were obtained with sub-mM sensitivity. LIBS offers a simple and robust method to study the distribution of inorganic materials without any specific labeling. Moreover, the compatibility of the setup with standard optical microscopy emphasizes its potential to provide multiple images of the same biological tissue with different types of response: elemental, molecular, or cellular.
激光诱导等离子体发射光谱法被应用于生物样品的元素分析。对啮齿动物组织(肾脏和肿瘤)的薄片进行激光诱导击穿光谱分析(LIBS),可以检测到:(i)体内天然存在的无机元素,如钠、钙、铜、镁、磷和铁;以及(ii)注射基于钆的纳米颗粒后检测到的硅和钆。在静脉注射颗粒后1至24小时对动物实施安乐死。使用电动测微三维载物台对样品进行二维扫描,使红外激光束能够以小于100μm的横向分辨率探测样品表面。获得了器官内钆元素的定量化学图像,灵敏度达到亚毫摩尔级别。LIBS提供了一种简单且可靠的方法来研究无机材料的分布,无需任何特异性标记。此外,该装置与标准光学显微镜的兼容性突出了其提供同一生物组织不同类型响应(元素、分子或细胞)的多重图像的潜力。