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Cellular Modulation of Polymeric Device Surfaces: Promise of Adult Stem Cells for Neuro-Prosthetics

机译:聚合物设备表面的细胞调节:成人干细胞对神经修复的承诺。

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摘要

Minimizing the foreign body response is seen as one critical research strategy for implants especially when designed for immune-privileged organs like the brain. The context of this work is to improve deep brain stimulating devices used in a consistently growing spectrum of psychomotor and psychiatric diseases mainly in form of stiff electrodes. Based on the compliance match hypothesis of biocompatibility we present another step forward using flexible implant materials covered with brain cell-mimicking layers. We covered two types of flexible polyimide films with glandular stem cells derived from pancreatic acini. Using real time-PCR and fluorescent immunocytochemistry we analyzed markers representing various cell types of all three germ layers and stemness. The results demonstrate an unchanged differentiation potential of the polyimide fixated cells as measured by mRNA and protein level. Additionally we developed a fibrinous hydrogel coating to protect them against shear forces upon eventual implantation. By repeating previous analysis and additional metabolism tests for all stages we corroborate the validity of this improvement. Consequently we assume that a stem cell-containing cover may provide a native, fully and actively integrating brain-mimicking interface to the neuropil.
机译:最大限度地减少异物反应被视为植入物的一项关键研究策略,尤其是在针对免疫功能受限的器官(如大脑)进行设计时。这项工作的背景是要改善在持续增长的精神运动和精神疾病谱中使用的深部脑刺激设备,这些设备主要以硬电极的形式出现。基于生物相容性的顺应性匹配假设,我们提出了使用覆盖有脑细胞模拟层的柔性植入物材料迈出的又一步。我们用源自胰腺腺泡的腺干细胞覆盖了两种类型的柔性聚酰亚胺薄膜。使用实时PCR和荧​​光免疫细胞化学,我们分析了代表所有三个细菌层和茎的各种细胞类型的标记。结果表明,通过mRNA和蛋白质水平测量,聚酰亚胺固定的细胞具有不变的分化潜能。另外,我们开发了纤维状水凝胶涂层,以保护它们在最终植入时不受剪切力的影响。通过对所有阶段重复先前的分析和其他代谢测试,我们证实了这种改进的有效性。因此,我们假设包含干细胞的覆盖物可以提供与神经纤维的天然,完全和主动整合的大脑模拟界面。

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