首页> 外文期刊>Cells tissues organs >Low-shear modelled microgravity environment maintains morphology and differentiated functionality of primary porcine hepatocyte cultures.
【24h】

Low-shear modelled microgravity environment maintains morphology and differentiated functionality of primary porcine hepatocyte cultures.

机译:低剪切建模的微重力环境保持了原代猪肝细胞培养的形态和分化功能。

获取原文
获取原文并翻译 | 示例
           

摘要

Hepatocytes cultured in conventional static culture rapidly lose polarity and differentiated function. This could be explained by gravity-induced sedimentation, which prevents formation of complete three-dimensional (3D) cell-cell/cell-matrix interactions and disrupts integrin-mediated signals (including the most abundant hepatic integrin alpha(5)beta(1)), important for cellular polarity and differentiation. Cell culture in a low fluid shear modelled microgravity (about 10(-2) g) environment promotes spatial colocation/self-aggregation of dissociated cells and induction of 3D differentiated liver morphology. Previously, we demonstrated the utility of a NASA rotary bioreactor in maintaining key metabolic functions and 3D aggregate formation of high-density primary porcine hepatocyte cultures over 21 days. Using serum-free chemically defined medium, without confounding interactions of exogenous bioscaffolding or bioenhancing surface materials, we investigated features of hepatic cellular polarity and differentiated functionality, including expression of hepatic integrin alpha(5), as markers of functional morphology. We report here that in the absence of exogenous biomatrix scaffolding, hepatocytes cultured in serum-free chemically defined medium in a microgravity environment rapidly (<24 h) form macroscopic (2-5 mm), compacted 3D hepatospheroid structures consisting of a shell of glycogen-positive viable cells circumscribing a core of eosinophilic cells. The spheroid shell layers exhibited ultrastructural, morphological and functional features of differentiated, polarized hepatic tissue including strong expression of the integrin alpha(5) subunit, functional bile canaliculi, albumin synthesis, and fine ultrastructure reminiscent of in vivo hepatic tissue. The low fluid shear microgravity environment may promote tissue-like self-organization of dissociated cells, and offer advantages over spheroids cultured in conventional formats to delineate optimal conditions for enhanced directed tissue self-assembly.
机译:在常规静态培养中培养的肝细胞迅速丧失极性和分化功能。这可以用重力诱导的沉降来解释,它阻止了完整的三维(3D)细胞-细胞/细胞-基质相互作用的形成并破坏了整联蛋白介导的信号(包括最丰富的肝整联蛋白alpha(5)beta(1) ),对细胞的极性和分化非常重要。在低流体剪切模型微重力(约10(-2)g)环境中的细胞培养可促进解离细胞的空间共定位/自聚集并诱导3D分化的肝形态。先前,我们展示了NASA旋转生物反应器在21天之内维持高密度原代猪肝细胞培养的关键代谢功能和3D聚集体形成的效用。使用无血清化学定义的介质,而不会混淆外源性生物支架或生物增强表面材料的相互作用,我们调查了肝细胞极性的特征和分化的功能,包括肝整合素α(5)的表达,作为功能形态学的标志。我们在这里报告说,在没有外源性生物基质支架的情况下,在无重力的化学定义的培养基中在微重力环境中快速培养肝细胞(<24小时),形成宏观的(2-5毫米),紧实的3D肝球形结构,由糖原壳组成阳性细胞围绕着嗜酸性细胞的核心。球形壳层表现出分化的,极化的肝组织的超微结构,形态和功能特征,包括整合素α(5)亚基的强表达,功能性胆管,白蛋白合成,以及超细的超微结构,使人联想到体内的肝组织。低流体剪切微重力环境可以促进解离的细胞的组织状自组织,并且比以常规形式培养的球体具有优势,以描绘出用于增强定向组织自组装的最佳条件。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号