Biomedical Technology, CFD Research Corporation, Huntsville, AL 35805, USA.
Lab Chip. 2013 Mar 21;13(6):1093-101. doi: 10.1039/c2lc41208j.
Current techniques for mimicking the Blood-Brain Barrier (BBB) largely use incubation chambers (Transwell) separated with a filter and matrix coating to represent and to study barrier permeability. These devices have several critical shortcomings: (a) they do not reproduce critical microenvironmental parameters, primarily anatomical size or hemodynamic shear stress, (b) they often do not provide real-time visualization capability, and (c) they require a large amount of consumables. To overcome these limitations, we have developed a microfluidics based Synthetic Microvasculature model of the Blood-Brain Barrier (SyM-BBB). The SyM-BBB platform is comprised of a plastic, disposable and optically clear microfluidic chip with a microcirculation sized two-compartment chamber. The chamber is designed in such a way as to permit the realization of side-by-side apical and basolateral compartments, thereby simplifying fabrication and facilitating integration with standard instrumentation. The individually addressable apical side is seeded with endothelial cells and the basolateral side can support neuronal cells or conditioned media. In the present study, an immortalized Rat Brain Endothelial cell line (RBE4) was cultured in SyM-BBB with a perfusate of Astrocyte Conditioned Media (ACM). Biochemical analysis showed upregulation of tight junction molecules while permeation studies showed an intact BBB. Finally, transporter assay was successfully demonstrated in SyM-BBB indicating a functional model.
目前模拟血脑屏障 (BBB) 的技术主要使用孵育室 (Transwell),该孵育室通过过滤器和基质涂层分隔,以代表和研究屏障通透性。这些设备存在几个关键缺陷:(a) 它们不能复制关键的微环境参数,主要是解剖大小或血液动力学切应力;(b) 它们通常不提供实时可视化功能;(c) 它们需要大量耗材。为了克服这些限制,我们开发了一种基于微流控的血脑屏障合成微血管模型 (SyM-BBB)。SyM-BBB 平台由一个塑料、一次性和透明的微流控芯片组成,带有一个微循环大小的两室腔。该腔室的设计方式允许实现并列的顶侧和基底外侧隔室,从而简化了制造过程并便于与标准仪器集成。可单独寻址的顶侧接种内皮细胞,基底外侧侧可以支持神经元细胞或条件培养基。在本研究中,永生化大鼠脑内皮细胞系 (RBE4) 在含有星形胶质细胞条件培养基 (ACM) 的 SyM-BBB 中进行培养。生化分析显示紧密连接分子的上调,而渗透研究显示完整的 BBB。最后,转运蛋白测定成功地在 SyM-BBB 中得到证明,表明这是一个功能性模型。