Department of Mechanical Engineering, University College London, London, UK.
European Synchrotron Radiation Facility, Grenoble, France.
Nat Protoc. 2023 May;18(5):1441-1461. doi: 10.1038/s41596-023-00804-z. Epub 2023 Mar 1.
Imaging across different scales is essential for understanding healthy organ morphology and pathophysiological changes. The macro- and microscale three-dimensional morphology of large samples, including intact human organs, is possible with X-ray microtomography (using laboratory or synchrotron sources). Preparation of large samples for high-resolution imaging, however, is challenging due to limitations such as sample shrinkage, insufficient contrast, movement of the sample and bubble formation during mounting or scanning. Here, we describe the preparation, stabilization, dehydration and mounting of large soft-tissue samples for X-ray microtomography. We detail the protocol applied to whole human organs and hierarchical phase-contrast tomography at the European Synchrotron Radiation Facility, yet it is applicable to a range of biological samples, including complete organisms. The protocol enhances the contrast when using X-ray imaging, while preventing sample motion during the scan, even with different sample orientations. Bubbles trapped during mounting and those formed during scanning (in the case of synchrotron X-ray imaging) are mitigated by multiple degassing steps. The sample preparation is also compatible with magnetic resonance imaging, computed tomography and histological observation. The sample preparation and mounting require 24-36 d for a large organ such as a whole human brain or heart. The preparation time varies depending on the composition, size and fragility of the tissue. Use of the protocol enables scanning of intact organs with a diameter of 150 mm with a local voxel size of 1 μm. The protocol requires users with expertise in handling human or animal organs, laboratory operation and X-ray imaging.
在不同尺度上进行成像对于理解健康器官形态和病理生理变化至关重要。使用 X 射线微断层扫描(使用实验室或同步加速器源)可以实现包括完整人体器官在内的大样本的宏观和微观三维形态。然而,由于样品收缩、对比度不足、在安装或扫描过程中样品移动和气泡形成等限制,大样本的高分辨率成像的准备工作具有挑战性。在这里,我们描述了用于 X 射线微断层扫描的大软组织样本的制备、稳定、脱水和安装。我们详细介绍了应用于整个人体器官和欧洲同步辐射设施的分相对比层析成像的方案,但它也适用于一系列生物样本,包括完整的生物体。该方案增强了 X 射线成像时的对比度,同时防止了扫描过程中的样品运动,即使是不同的样品方向。通过多次脱气步骤可以减轻安装过程中捕获的气泡和在扫描过程中形成的气泡(在同步加速器 X 射线成像的情况下)。样品制备也与磁共振成像、计算机断层扫描和组织学观察兼容。对于像整个人脑或心脏这样的大器官,样品制备和安装需要 24-36 天。制备时间取决于组织的组成、大小和易碎性。使用该方案可以扫描直径为 150 毫米、局部体素尺寸为 1 微米的完整器官。该方案需要具有处理人体或动物器官、实验室操作和 X 射线成像专业知识的用户。