Center for MOST and Image Fusion Analysis Shanghai Institute of Materia Medica Chinese Academy of Sciences Shanghai 201210 China.
Center for Drug Delivery Systems Shanghai Institute of Materia Medica Chinese Academy of Sciences Shanghai 201210 China.
Adv Sci (Weinh). 2021 Feb 8;8(8):2003941. doi: 10.1002/advs.202003941. eCollection 2021 Apr.
The effective pulmonary deposition of inhaled particulate carriers loaded with drugs is a prerequisite for therapeutic effects of drug delivery via inhalation route. Revealing the sophisticated lung scaffold and intrapulmonary distribution of particles at three-dimensional (3D), in-situ, and single-particle level remains a fundamental and critical challenge for dry powder inhalation in pre-clinical research. Here, taking advantage of the micro optical sectioning tomography system, the high-precision cross-scale visualization of entire lung anatomy is obtained. Then, co-localized lung-wide datasets of both cyto-architectures and fluorescent particles are collected at full scale with the resolution down to individual particles. The precise spatial distribution pattern reveals the region-specific distribution and structure-associated deposition of the inhalable particles in lungs, which is undetected by previous methods. Overall, this research delivers comprehensive and high-resolution 3D detection of pulmonary drug delivery vectors and provides a novel strategy to evaluate materials distribution for drug delivery.
吸入式载药颗粒载体在肺部的有效沉积是通过吸入途径给药发挥治疗效果的前提。揭示复杂的肺部支架结构和颗粒在三维(3D)、原位和单颗粒水平的肺内分布仍然是干粉吸入在临床前研究中的一个基本和关键挑战。在这里,我们利用微光学切片断层成像系统,获得了整个肺部解剖结构的高精度跨尺度可视化。然后,以全尺度收集细胞结构和荧光颗粒的共定位肺宽数据集,分辨率可达到单个颗粒。精确的空间分布模式揭示了可吸入颗粒在肺部的区域特异性分布和与结构相关的沉积,这是以前的方法无法检测到的。总的来说,这项研究全面、高分辨率地检测了肺部药物输送载体,并为药物输送材料分布的评估提供了一种新策略。