Li Wenyan, Zhang Guohui, Guan Teng, Zhang Xiaosha, Khosrozadeh Ali, Xing Malcolm, Kong Jiming
Department of Forensic Medicine, Hebei North University, Zhangjiakou 075000, China.
ACS Biomater Sci Eng. 2018 Aug 13;4(8):2825-2835. doi: 10.1021/acsbiomaterials.8b00654. Epub 2018 Jul 19.
Cell encapsulation using microgel and nanogel, as a strategy of cell surface engineering, can mimic the niches of cells and organoids. The established niche that seasons cells and tissues for the controllable development underlies the superiority of encapsulation on cells. Encapsulation by layer-by-layer nanogel coating is a bottom-up simulation of extracellular matrices via nano- or micropackaging of cells in a multiscale way. We report the nanogel encapsulation on individual neuronal cell for a basic study and application of permeability tuning to regulate cells' apoptosis. Gelatin and hyaluronic acid (HA) are applied for encapsulating PC12 cells. The permeability of encapsulation on cells can be managed by adjusting different parameters such as material concentration, layer thickness and environmental pH. Eventually, permeability of tumor necrosis factor-α (TNF-α) is controlled by tuning encapsulating parameters for blocking the interaction with TNF-receptor 1, so that cell apoptosis is inhibited. In short, nanogel encapsulation exhibits controllable permeability to different molecules and exerts screen effect on TNF-α for protection. This technique holds great potential in basic biological research and translational research, for example, the protection of transplanted cells against apoptotic factors in target areas.
使用微凝胶和纳米凝胶进行细胞封装,作为一种细胞表面工程策略,可以模拟细胞和类器官的生态位。为细胞和组织的可控发育建立的生态位是细胞封装优越性的基础。通过逐层纳米凝胶涂层进行封装是通过多尺度方式对细胞进行纳米或微包装,自下而上模拟细胞外基质。我们报道了对单个神经元细胞进行纳米凝胶封装的基础研究以及通过调节通透性来调控细胞凋亡的应用。明胶和透明质酸(HA)被用于封装PC12细胞。细胞封装的通透性可以通过调整不同参数来控制,如材料浓度、层厚度和环境pH值。最终,通过调整封装参数来控制肿瘤坏死因子-α(TNF-α)的通透性,以阻断其与TNF受体1的相互作用,从而抑制细胞凋亡。简而言之,纳米凝胶封装对不同分子具有可控的通透性,并对TNF-α发挥屏蔽作用以提供保护。这项技术在基础生物学研究和转化研究中具有巨大潜力,例如,保护移植细胞免受靶区域凋亡因子的影响。