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探索多金属氧酸盐作为生物组织微焦点计算机断层扫描对比增强的非破坏性染色剂。

Exploring polyoxometalates as non-destructive staining agents for contrast-enhanced microfocus computed tomography of biological tissues.

机构信息

Prometheus, Division of Skeletal Tissue Engineering, KU Leuven, Leuven, Belgium; Biomechanics Section, Department of Mechanical Engineering, KU Leuven, Leuven, Belgium.

Molecular Design and Synthesis, Department of Chemistry, KU Leuven, Leuven, Belgium; Biomechanics Lab, Institute of Mechanics, Materials, and Civil Engineering, UCLouvain, Louvain-la-Neuve, Belgium.

出版信息

Acta Biomater. 2020 Mar 15;105:253-262. doi: 10.1016/j.actbio.2020.01.038. Epub 2020 Jan 26.

Abstract

To advance clinical translation of regenerative medicine, there is, amongst others, still need for better insights in tissue development and disease. For this purpose, more precise imaging of the 3D microstructure and spatial interrelationships of the different tissues within organs is crucial. Despite being destructive towards the sample, conventional histology still is the gold standard for structural analysis of biological tissues. It is, however, limited by 2D sections of a 3D object, prohibiting full 3D structural analysis. MicroCT has proven to provide full 3D structural information of mineralized tissues and dense biomaterials. However, the intrinsic low X-ray absorption of soft tissues requires contrast-enhancing staining agents (CESAs). In a previous study, we showed that hafnium-substituted Wells-Dawson polyoxometalate (Hf-WD POM) allows simultaneous contrast-enhanced microCT (CE-CT) visualization of bone and its marrow vascularization and adiposity. In this study, other POM species have been examined for their potential as soft tissue CESAs. Four Wells-Dawson POMs, differing in structure and overall charge, were used to stain murine long bones and kidneys. Their staining potential and diffusion rate were compared to those of Hf-WD POM and phosphotungstic acid (PTA), a frequently used but destructive CESA. Monolacunary Wells-Dawson POM (Mono-WD POM) showed similar soft tissue enhancement as Hf-WD POM and PTA. Moreover, Mono-WD POM is less destructive, shows a better diffusion than PTA, and its synthesis requires less time and cost than Hf-WD POM. Finally, the solubility of Mono-WD POM was improved by addition of lithium chloride (LiCl) to the staining solution, enhancing further the soft tissue contrast. STATEMENT OF SIGNIFICANCE: To advance clinical translation of regenerative medicine, there is, amongst others, still need for better insights in tissue development and disease. For this purpose, more precise imaging of the 3D microstructure and spatial interrelationships of the different tissues within organs is crucial. Current standard structural analysis techniques (e.g. 2D histomorphometry), however, do not allow full 3D assessment. Contrast-enhanced X-ray computed tomography has emerged as a powerful 3D structural characterization tool of soft biological tissues. In this study, from a library of Wells Dawson polyoxometalates (WD POMs), we identified monolacunary WD POM together with lithium chloride, dissolved in phosphate buffered saline, as the most suitable contrast-enhancing staining agent solution for different biological tissues without tissue shrinkage.

摘要

为了推进再生医学的临床转化,人们仍然需要更好地了解组织发育和疾病。为此,更精确地成像器官内不同组织的 3D 微观结构和空间相互关系至关重要。尽管对样本具有破坏性,但传统的组织学仍然是生物组织结构分析的金标准。然而,它受到 3D 物体的 2D 切片的限制,无法进行全 3D 结构分析。MicroCT 已被证明可提供矿化组织和致密生物材料的全 3D 结构信息。然而,软组织的固有低 X 射线吸收率需要对比增强染色剂(CESAs)。在之前的研究中,我们表明铪取代的 Wells-Dawson 多金属氧酸盐(Hf-WD POM)允许同时对比增强 MicroCT(CE-CT)可视化骨及其骨髓血管化和脂肪化。在这项研究中,还检查了其他 POM 物种作为软组织 CESAs 的潜力。使用了四种结构和总电荷不同的 Wells-Dawson POM 来染色小鼠长骨和肾脏。将它们的染色潜力和扩散速率与 Hf-WD POM 和磷钨酸(PTA)进行了比较,PTA 是一种常用但具有破坏性的 CESAs。单腔 Wells-Dawson POM(Mono-WD POM)显示出与 Hf-WD POM 和 PTA 相似的软组织增强效果。此外,Mono-WD POM 的破坏性较小,扩散性优于 PTA,其合成所需的时间和成本也低于 Hf-WD POM。最后,通过向染色溶液中添加氯化锂(LiCl)来提高 Mono-WD POM 的溶解度,进一步增强了软组织对比度。

意义声明

为了推进再生医学的临床转化,人们仍然需要更好地了解组织发育和疾病。为此,更精确地成像器官内不同组织的 3D 微观结构和空间相互关系至关重要。当前的标准结构分析技术(例如,2D 组织形态计量学),然而,不允许进行全 3D 评估。对比增强 X 射线计算机断层扫描已成为软组织的强大 3D 结构特征工具。在这项研究中,从 Wells Dawson 多金属氧酸盐(WD POM)库中,我们确定了单腔 WD POM 与氯化锂一起,溶解在磷酸盐缓冲盐溶液中,是最适合不同生物组织的对比增强染色剂溶液,不会导致组织收缩。

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