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3D Bioprinting Pluripotent Stem Cell Derived Neural Tissues Using a Novel Fibrin Bioink Containing Drug Releasing Microspheres

机译:3D Bioplint多能干细胞使用含有药物释放微球的新型纤维蛋白生物蛋白来源的神经组织

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摘要

3D bioprinting combines cells with a supportive bioink to fabricate multiscale, multi-cellular structures that imitate native tissues. Here, we demonstrate how our novel fibrin-based bioink formulation combined with drug releasing microspheres can serve as a tool for bioprinting tissues using human induced pluripotent stem cell (hiPSC)-derived neural progenitor cells (NPCs). Microspheres, small spherical particles that generate controlled drug release, promote hiPSC differentiation into dopaminergic neurons when used to deliver small molecules like guggulsterone. We used the microfluidics based RX1 bioprinter to generate domes with a 1 cm diameter consisting of our novel fibrin-based bioink containing guggulsterone microspheres and hiPSC-derived NPCs. The resulting tissues exhibited over 90% cellular viability 1 day post printing that then increased to 95% 7 days post printing. The bioprinted tissues expressed the early neuronal marker, TUJ1 and the early midbrain marker, Forkhead Box A2 (FOXA2) after 15 days of culture. These bioprinted neural tissues expressed TUJ1 (15 ± 1.3%), the dopamine marker, tyrosine hydroxylase (TH) (8 ± 1%) and other glial markers such as glial fibrillary acidic protein (GFAP) (15 ± 4%) and oligodendrocyte progenitor marker (O4) (4 ± 1%) after 30 days. Also, quantitative polymerase chain reaction (qPCR) analysis showed these bioprinted tissues expressed TUJ1, NURR1 (gene expressed in midbrain dopaminergic neurons), LMX1B, TH, and PAX6 after 30 days. In conclusion, we have demonstrated that using a microsphere-laden bioink to bioprint hiPSC-derived NPCs can promote the differentiation of neural tissue.
机译:3D Bioplinting将电池与支持性的生物锁组合以制造多尺度,多细胞结构,用于模仿本地组织。在这里,我们证明了我们的新型纤维蛋白的生物克配方与药物释放微球的结合方式可以用作使用人诱导的多能干细胞(HIPSC)的神经祖细胞(NPC)的生物监测组织的工具。微球,产生受控药物释放的小球形颗粒,促进肝脏分化成多巴胺能神经元,以便递送古街龙等小分子。我们使用基于微流体的Rx1 Biopleinter,产生1厘米直径的圆顶,包括我们的新型纤维蛋白的基于纤维蛋白的生物链,含有Guggulstone微球和HIPSC衍生的NPC。所得组织出现超过90%的细胞活力1天后印刷,然后在印刷后增加至95%7天。生物印刷组织在15天培养后表达了早期的神经元标记,TuJ1和早期的中脑标记物,尖头箱A2(FoxA2)。这些生物组织的神经组织表达了Tuj1(15±1.3%),多巴胺标记物,酪氨酸羟化酶(Th)(8±1%)和其他胶质标记物,如胶质纤维酸性蛋白(GFAP)(15±4%)和少突胶质细胞祖细胞30天后标记(O4)(4±1%)。此外,定量聚合酶链反应(QPCR)分析显示这些生物印刷组织表达TuJ1,Nurr1(在中脑中表达的基因),30天后LMX1B,TH和PAX6。总之,我们已经证明,使用微距离升起的生物芯片源于生物印章髋关节衍生的NPC可以促进神经组织的分化。

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