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首页> 外文期刊>Journal of Bioscience and Bioengineering >Reconstitution of hepatic tissue architectures from fetal liver cells obtained from a three-dimensional culture with a rotating wall vessel bioreactor
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Reconstitution of hepatic tissue architectures from fetal liver cells obtained from a three-dimensional culture with a rotating wall vessel bioreactor

机译:用旋转壁血管生物反应器从三维培养获得的胎儿肝细胞中重建肝组织结构

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摘要

Reconstitution of tissue architecture in vitro is important because it enables researchers to investigate the interactions and mutual relationships between cells and cellular signals involved in the three-dimensional (3D) construction of tissues. To date, in vitro methods for producing tissues with highly ordered structure and high levels of function have met with limited success although a variety of 3D culture systems have been investigated. In this study, we reconstituted functional hepatic tissue including mature hepatocyte and blood vessel-like structures accompanied with bile duct-like structures from E15.5 fetal liver cells, which contained more hepatic stem/progenitor cells comparing with neonatal liver cells. The culture was performed in a simulated microgravity environment produced by a rotating wall vessel (RWV) bioreactor. The hepatocytes in the reconstituted 3D tissue were found to be capable of producing albumin and storing glycogen. Additionally, bile canaliculi between hepatocytes, characteristics of adult hepatocyte in vivo were also formed. Apart from this, bile duct structure secreting mucin was shown to form complicated tubular branches. Furthermore, gene expression analysis by semiquantitative RT-PCR revealed the elevated levels of mature hepatocyte markers as well as genes with the hepatic function. With RWV culture system, we could produce functionally reconstituted liver tissue and this might be useful in pharmaceutical industry including drug screening and testing and other applications such as an alternative approach to experimental animals.
机译:体外组织结构的重建很重要,因为它使研究人员能够研究细胞与参与组织的三维(3D)构建的细胞信号之间的相互作用和相互关系。迄今为止,尽管已经研究了多种3D培养系统,但用于生产具有高度有序结构和高水平功能的组织的体外方法却取得了有限的成功。在这项研究中,我们从E15.5胎儿肝细胞中重建了功能性肝组织,包括成熟的肝细胞和血管样结构以及胆管样结构,与新生肝细胞相比,它包含更多的肝干/祖细胞。培养是在由旋转壁容器(RWV)生物反应器产生的模拟微重力环境中进行的。发现重构的3D组织中的肝细胞能够产生白蛋白并存储糖原。另外,还形成了肝细胞之间的胆小管,体内成年肝细胞的特征。除此之外,显示出分泌粘蛋白的胆管结构形成复杂的管状分支。此外,通过半定量RT-PCR进行的基因表达分析显示,成熟肝细胞标记物以及具有肝功能的基因水平升高。使用RWV培养系统,我们可以生产功能重建的肝组织,这可能在制药行业有用,包括药物筛选和测试以及其他应用,例如实验动物的替代方法。

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