Multiscale Three-Dimensional Evaluation and Analysis of Murine Lung Vasculature From Macro- to Micro-Structural Level.

IF 2.5 4区 医学 Q2 CARDIAC & CARDIOVASCULAR SYSTEMS Pulmonary Circulation Pub Date : 2025-01-21 eCollection Date: 2025-01-01 DOI:10.1002/pul2.70038
Birger Tielemans, Nora F Marain, Axelle Kerstens, Nicolas Peredo, Montserrat Coll-Lladó, Nicola Gritti, Perrine de Villemagne, Paul Dorval, Vincent Geudens, Michaela Orlitová, Sebastian Munck, Bartosz Leszczyński, Jim Swoger, Greetje Vande Velde
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Abstract

The pulmonary vasculature plays a pivotal role in the development and progress of chronic lung diseases. Due to limitations of conventional two-dimensional histological methods, the complexity and the detailed anatomy of the lung blood circulation might be overlooked. In this study, we demonstrate the practical use of optical serial block face imaging (SBFI), ex vivo microcomputed tomography (micro-CT), and nondestructive optical tomography for visualization and quantification of the pulmonary circulation's 3D architecture from macro- to micro-structural levels in murine lung samples. We demonstrate that SBFI can provide rapid, cost-effective, and label-free visualization of mouse lung macrostructures and large pulmonary vessels. Micro-CT offers high-resolution imaging and captures microvascular and (pre)capillary structures, with microstructural quantification. Optical microscopy techniques such as optical projection tomography (OPT) and light sheet fluorescence microscopy, allows noninvasive, mesoscopic imaging of optically cleared mouse lungs, still enabling 3D microscopic reconstruction down to the precapillary level. By integrating SBFI, micro-CT, and nondestructive optical microscopy, we provide a framework for detailed and 3D understanding of the pulmonary circulation, with emphasis on vascular pruning and rarefaction. Our study showcases the applicability and complementarity of these techniques for organ-level vascular imaging, offering researchers flexibility in selecting the optimal approach based on their specific requirements. In conclusion, we propose 3D-directed approaches for a detailed whole-organ view on the pulmonary vasculature in health and disease, to advance our current knowledge of diseases affecting the pulmonary vasculature.

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从宏观到微观结构水平对小鼠肺血管系统的多尺度三维评价与分析。
肺血管在慢性肺部疾病的发生发展中起着举足轻重的作用。由于传统二维组织学方法的限制,肺血液循环的复杂性和详细解剖可能被忽视。在这项研究中,我们展示了光学连续块面成像(SBFI)、离体微计算机断层扫描(micro-CT)和非破坏性光学断层扫描的实际应用,用于从宏观到微观结构水平对小鼠肺样本的肺循环3D结构进行可视化和量化。我们证明SBFI可以提供快速、经济、无标记的小鼠肺宏观结构和大肺血管的可视化。Micro-CT提供高分辨率成像和捕获微血管和(预)毛细血管结构,微结构量化。光学显微镜技术,如光学投影断层扫描(OPT)和光片荧光显微镜,可以对光学清除的小鼠肺部进行无创的介观成像,仍然可以在毛细血管前水平进行3D显微重建。通过整合SBFI, micro-CT和非破坏性光学显微镜,我们提供了一个详细和3D了解肺循环的框架,重点是血管修剪和稀疏。我们的研究展示了这些技术在器官水平血管成像中的适用性和互补性,为研究人员提供了根据他们的具体要求选择最佳方法的灵活性。总之,我们提出了3d定向的方法,用于健康和疾病中肺血管的详细全器官视图,以推进我们目前对影响肺血管疾病的知识。
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来源期刊
Pulmonary Circulation
Pulmonary Circulation Medicine-Pulmonary and Respiratory Medicine
CiteScore
4.20
自引率
11.50%
发文量
153
审稿时长
15 weeks
期刊介绍: Pulmonary Circulation''s main goal is to encourage basic, translational, and clinical research by investigators, physician-scientists, and clinicans, in the hope of increasing survival rates for pulmonary hypertension and other pulmonary vascular diseases worldwide, and developing new therapeutic approaches for the diseases. Freely available online, Pulmonary Circulation allows diverse knowledge of research, techniques, and case studies to reach a wide readership of specialists in order to improve patient care and treatment outcomes.
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