Department of Mechanical Engineering, Iowa State University, Ames, IA, 50011, USA.
Department of Mechanical Engineering, Stanford University, Stanford, CA, 94305, USA.
Adv Biol (Weinh). 2021 Nov;5(11):e2101026. doi: 10.1002/adbi.202101026. Epub 2021 Oct 8.
Engineering conductive 3D cell scaffoldings offer advantages toward the creation of physiologically relevant platforms with integrated real-time sensing capabilities. Dopaminergic neural cells are encapsulated into graphene-laden alginate microfibers using a microfluidic approach, which is unmatched for creating highly-tunable microfibers. Incorporating graphene increases the conductivity of the alginate microfibers by 148%, creating a similar conductivity to native brain tissue. The cell encapsulation procedure has an efficiency of 50%, and of those cells, ≈30% remain for the entire 6-day observation period. To understand how the microfluidic encapsulation affects cell genetics, tyrosine hydroxylase, tubulin beta 3 class 3, interleukin 1 beta, and tumor necrosis factor alfa are analyzed primarily with real-time reverse transcription-quantitative polymerase chain reaction and secondarily with enzyme-linked immunosorbent assay, immediately after manufacturing, after encapsulation in polymer matrix for 6 days, and after encapsulation in the graphene-polymer composite for 6 days. Preliminary data shows that the manufacturing process and combination with alginate matrix affect the expression of the studied genes immediately after manufacturing. In addition, the introduction of graphene further changes gene expressions. Long-term encapsulation of neural cells in alginate and 6-day exposure to graphene also leads to changes in gene expressions.
工程化的导电 3D 细胞支架在创建具有集成实时感测功能的生理相关平台方面具有优势。多巴胺能神经细胞使用微流控方法被包裹在含有石墨烯的藻酸盐微纤维中,这是创建高度可调微纤维的无与伦比的方法。掺入石墨烯可使藻酸盐微纤维的电导率提高 148%,使其与天然脑组织的电导率相似。细胞封装过程的效率为 50%,在这些细胞中,约 30%在整个 6 天的观察期内保持存活。为了了解微流控封装如何影响细胞遗传学,主要通过实时逆转录定量聚合酶链反应和其次通过酶联免疫吸附试验分析酪氨酸羟化酶、微管蛋白β3 类 3、白细胞介素 1β和肿瘤坏死因子α,在制造后、在聚合物基质中封装 6 天后和在石墨烯-聚合物复合材料中封装 6 天后立即进行分析。初步数据表明,制造过程和与藻酸盐基质的结合会立即影响制造后研究基因的表达。此外,引入石墨烯会进一步改变基因表达。神经细胞在藻酸盐中的长期封装和 6 天暴露于石墨烯也会导致基因表达的变化。