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使用逐层技术构建包含血管滋养管的三维人体动脉壁模型并进行组织学分析。

Construction and histological analysis of a 3D human arterial wall model containing vasa vasorum using a layer-by-layer technique.

作者信息

Shima Fumiaki, Narita Hirokazu, Hiura Ayami, Shimoda Hiroshi, Akashi Mitsuru

机构信息

Department of Frontier Biosciences, Graduate School of Frontier Biosciences, Osaka University, Osaka, Japan.

Department of Anatomical Science, Graduate School of Medicine, Hirosaki University, Hirosaki, Japan.

出版信息

J Biomed Mater Res A. 2017 Mar;105(3):814-823. doi: 10.1002/jbm.a.35942. Epub 2016 Nov 22.

Abstract

There is considerable global demand for three-dimensional (3D) functional tissues which mimic our native organs and tissues for use as in vitro drug screening systems and in regenerative medicine. In particular, there has been an increasing number of patients who suffer from arterial diseases such as arteriosclerosis. As such, in vitro 3D arterial wall models that can evaluate the effects of novel medicines and a novel artificial graft for the treatment are required. In our previous study, we reported the rapid construction of 3D tissues by employing a layer-by-layer (LbL) technique and revealed their potential applications in the pharmaceutical fields and tissue engineering. In this study, we successfully constructed a 3D arterial wall model containing vasa vasorum by employing a LbL technique for the first time. The cells were coated with extracellular matrix nanofilms and seeded into a culture insert using a cell accumulation method. This model had a three-layered hierarchical structure: a fibroblast layer, a smooth muscle layer, and an endothelial layer, which resembled the native arterial wall. Our method could introduce vasa vasorum into a fibroblast layer in vitro and the 3D arterial wall model showed barrier function which was evaluated by immunostaining and transendothelial electrical resistance measurement. Furthermore, electron microscopy observations revealed that the vasa vasorum was composed of single-layered endothelial cells, and the endothelial tubes were surrounded by the basal lamina, which are known to promote maturation and stabilization in native blood capillaries. These models should be useful for tissue engineering, regenerative medicine, and pharmaceutical applications. © 2016 Wiley Periodicals, Inc. J Biomed Mater Res Part A: 105A: 814-823, 2017.

摘要

全球对三维(3D)功能性组织有着巨大需求,这些组织可模拟我们的天然器官和组织,用作体外药物筛选系统和再生医学。特别是,患有诸如动脉硬化等动脉疾病的患者数量一直在增加。因此,需要能够评估新型药物效果的体外3D动脉壁模型以及用于治疗的新型人工移植物。在我们之前的研究中,我们报道了通过采用逐层(LbL)技术快速构建3D组织,并揭示了它们在制药领域和组织工程中的潜在应用。在本研究中,我们首次采用LbL技术成功构建了包含滋养血管的3D动脉壁模型。细胞用细胞外基质纳米膜包被,并使用细胞积累方法接种到培养插入物中。该模型具有三层层次结构:成纤维细胞层、平滑肌层和内皮细胞层,类似于天然动脉壁。我们的方法可以在体外将滋养血管引入成纤维细胞层,并且通过免疫染色和跨内皮电阻测量评估的3D动脉壁模型显示出屏障功能。此外,电子显微镜观察表明,滋养血管由单层内皮细胞组成,并且内皮管被基膜包围,已知基膜可促进天然毛细血管的成熟和稳定。这些模型应可用于组织工程、再生医学和制药应用。©2016威利期刊公司。《生物医学材料研究杂志》A部分:105A:814 - 823,2017年。

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