Center for Brain Repair and Rehabilitation, Department of Clinical Neuroscience and Rehabilitation, Institute of Neuroscience and Physiology, Sahlgrenska Academy at the University of Gothenburg, Sweden.
Glia. 2013 Mar;61(3):432-40. doi: 10.1002/glia.22446. Epub 2013 Jan 7.
We tested the hypothesis that astrocytes grown in a suitable three-dimensional (3D) cell culture system exhibit morphological and biochemical features of in vivo astrocytes that are otherwise lost upon transfer from the in vivo to a two-dimensional (2D) culture environment. First, we report development of a novel bioactively coated nanofiber-based 3D culture system (Bioactive3D) that supports cultures of primary mouse astrocytes. Second, we show that Bioactive3D culture system maintains the in vivo-like morphological complexity of cultured cells, allows movement of astrocyte filopodia in a way that resembles the in vivo situation, and also minimizes the cellular stress, an inherent feature of standard 2D cell culture systems. Third, we demonstrate that the expression of gap junctions is reduced in astrocytes cultured in a 3D system that supports well-organized cell-cell communication, in contrast to the enforced planar tiling of cells in a standard 2D system. Finally, we show that astrocytes cultured in the Bioactive3D system do not show the undesired baseline activation but are fully responsive to activation-inducing stimuli. Thus, astrocytes cultured in the Bioactive3D appear to more closely resemble astrocytes in vivo and represent a superior in vitro system for assessing (patho)physiological and pharmacological responses of these cells and potentially also in co-cultures of astrocytes and other cell types.
我们检验了这样一个假设,即在合适的三维(3D)细胞培养系统中生长的星形胶质细胞表现出体内星形胶质细胞的形态和生化特征,否则这些特征会在从体内转移到二维(2D)培养环境时丢失。首先,我们报告了一种新型生物活性涂层纳米纤维 3D 培养系统(Bioactive3D)的开发,该系统支持原代小鼠星形胶质细胞的培养。其次,我们表明 Bioactive3D 培养系统维持了培养细胞类似于体内的形态复杂性,允许星形胶质细胞丝状伪足以类似于体内的方式移动,并最大限度地减少了细胞应激,这是标准 2D 细胞培养系统的固有特征。第三,我们证明,在支持良好组织化细胞间通讯的 3D 系统中培养的星形胶质细胞中,间隙连接的表达减少,与标准 2D 系统中强制的细胞平面平铺形成对比。最后,我们表明,在 Bioactive3D 系统中培养的星形胶质细胞不会表现出不需要的基础激活,但对激活诱导刺激完全有反应。因此,在 Bioactive3D 中培养的星形胶质细胞似乎更类似于体内的星形胶质细胞,并且代表了一种优越的体外系统,可用于评估这些细胞的(病理)生理和药理学反应,并且还可能用于星形胶质细胞和其他细胞类型的共培养。