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Critical Factors Affecting Cell Encapsulation in Superporous Hydrogels

机译:影响超水凝胶细胞包封的关键因素

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摘要

We recently showed that superporous hydrogel scaffolds promote long-term stem cell viability and cell driven mineralization when cells were seeded within the pores of pre-fabricated SPH scaffolds. The possibility of cell encapsulation within SPH hydrogel matrix during its fabrication was further explored in this study. The impact of each chemical component used in the SPH fabrication and each step of the fabrication process on cell viability was systematically examined. Ammonium persulfate, an initiator, and sodium bicarbonate, the gas-generating compound, were the two components having significant toxicity toward encapsulated cells at the concentrations necessary for SPH fabrication. Cell survival rates were 55.7±19.3% and 88.8±9.4% after 10 minute exposure to ammonium persulfate and sodium bicarbonate solutions, respectively. In addition, solution pH change via the addition of sodium bicarbonate had significant toxicity toward encapsulated cells with cell survival of only 50.3±2.5%. Despite toxicity of chemical components and the SPH fabrication method, cells still exhibited significant overall survival rates within SPHs of 81.2±6.8 and 67.0±0.9%, respectively, 48 and 72 hours after encapsulation. This method of cell encapsulation holds promise for use in vitro an in vivo as a scaffold material for both hydrogel matrix encapsulation and cell seeding within the pores.
机译:我们最近表明,当在预制造的SPH支架的孔内接种细胞时,渗透水凝胶支架促进长期干细胞活力和细胞驱动的矿化。本研究进一步探索了在其制造过程中SPH水凝胶基质中细胞包封的可能性。系统地检查了SPH制造中使用的每个化学成分的影响和对细胞活力的制造过程的每个步骤。过硫酸铵,引发剂和碳酸氢钠,气体产生的化合物是在SPH制造所需的浓度下具有显着毒性具有显着毒性的两种组分。 10分钟暴露于过硫酸铵和碳酸氢钠溶液的10分钟后,细胞存活率分别为55.7±19.3%和88.8±9.4%。此外,通过添加碳酸氢钠的溶液pH改变对具有仅50.3±2.5%的细胞存活的包封细胞具有显着的毒性。尽管化学成分和SPH制造方法毒性,但在封装后,细胞仍然在81.2±6.8和67.0±6.8和67.0±0.9%的SPH中表现出显着的整体存活率。这种细胞包封方法具有在体内使用的承诺作为支架材料的体外,用于孔内的水凝胶基质包封和细胞播种。

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