Tirella Annalisa, La Marca Margherita, Brace Leigh-Anne, Mattei Giorgio, Aylott Jonathan W, Ahluwalia Arti
J Biomed Nanotechnol. 2015 Aug;11(8):1451-60. doi: 10.1166/jbn.2015.2085.
Highly reproducible Nano-in-Micro constructs are fabricated to provide a well-defined and self-reporting biomimetic environment for hepatocytes. Based on a protein/hydrogel formulation with controlled shape, size and composition, the constructs enable efficient nutrient exchange and provide an adhesive 3D framework to cells. Co-encapsulation of hepatocytes and ratiometric optical nanosensors with pH sensitivity in the physiological range allows continuous monitoring of the microenvironment. The lobule-sized microbeads are fabricated using an automated droplet generator, Sphyga (Spherical Hydrogel Generator) combining alginate, collagen, decellularized hepatic tissue, pH-nanosensors and hepatocytes. The pH inside the Nano-in-Micro constructs is monitored during culture, while assaying media for hepatic function and vitality markers. Although the local pH changes by several units during bead fabrication, when encapsulated cells are most likely to undergo stress, it is stable and buffered by cell culture media thereafter. Albumin secretion and urea production are significantly higher in the microbeads compared with controls, indicating that the encapsulated Nano-in-Micro environment is conducive to enhanced hepatic function.
制备出具有高度可重复性的微纳结构,为肝细胞提供一个明确且能自我报告的仿生环境。基于具有可控形状、尺寸和组成的蛋白质/水凝胶配方,这些结构能够实现高效的营养物质交换,并为细胞提供一个有黏附性的三维框架。将肝细胞与在生理范围内具有pH敏感性的比率型光学纳米传感器共同封装,可对微环境进行持续监测。使用自动液滴发生器Sphyga(球形水凝胶发生器),结合藻酸盐、胶原蛋白、脱细胞肝组织、pH纳米传感器和肝细胞,制备出小叶大小的微珠。在培养过程中监测微纳结构内部的pH,同时检测培养基中的肝功能和活力标志物。尽管在微珠制备过程中局部pH会变化几个单位,此时被封装的细胞最有可能受到应激,但此后它是稳定的,并由细胞培养基缓冲。与对照组相比,微珠中白蛋白分泌和尿素生成显著更高,表明封装的微纳环境有利于增强肝功能。