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Microfabricated and 3-D Printed Soft Bioelectronic Constructs from PAn-PAAMPSA-Containing Hydrogels

机译:含PAn-PAAMPSA的水凝胶的微细加工和3D打印的软生物电子构造

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The formation of hybrid bioactive and inherently conductive constructs of composites formed from polyaniline-polyacrylamidomethylpropane sulfonic acid (PAn-PAAMPSA) nanomaterials (0.00–10.0 wt%) within poly(2-hydroxy ethyl methacrylate- co -N-{Tris(hydroxymethyl)methyl} acrylamide)- co -polyethyleneglycol methacrylate) p(HEMA- co -HMMA- co -PEGMA) hydrogels was made possible using microlithographic fabrication and 3-D printing. Hybrid constructs formed by combining a non-conductive base (0.00 wt% PAn-PAAMPSA) and electroconductive (ECH) (varying wt% PAn-PAAMPSA) hydrogels using these two production techniques were directly compared. Hydrogels were electrically characterized using two-point probe resistivity and electrochemical impedance spectroscopy. Results show that incorporation of 0.10 wt% PAn-PAAMPSA within the base hydrogel matrices was enough to achieve percolation and high conductivity with a membrane resistance (R M ) of 2140 ? and 87.9 ? for base (0.00 wt%) and ECH (10.0 wt%), respectively. UV-vis spectroscopy of electroconductive hydrogels indicated a bandgap of 2.8 eV that was measurable at concentrations of 0.10 wt% PAn-PAAMPSA. Both base and electroconductive hydrogels supported the attachment and growth of NIH/3T3 fibroblast cells. When the base hydrogel was rendered bioactive by the inclusion of collagen (200 μg/mL), it also supported the attachment, but not the differentiation, of PC-12 neural progenitor cells.
机译:由聚苯胺-聚丙烯酰胺基甲基丙烷磺酸(PAn-PAAMPSA)纳米材料(0.00-10.0 wt%)在甲基丙烯酸2-羟乙酯-co-N- {三(羟甲基)甲基}使用微平版印刷术制造和3-D印刷使丙烯酰胺)-聚甲基丙烯酸乙二醇酯p(HEMA-共聚物-HMMA-共聚物-PEGMA)水凝胶成为可能。直接比较了使用这两种生产技术将非导电性碱(0.00 wt%PAn-PAAMPSA)和导电(ECH)(不同wt%PAn-PAAMPSA)水凝胶组合而成的杂化构建体。使用两点探针电阻率和电化学阻抗谱对水凝胶进行电学表征。结果表明,在基础水凝胶基质中加入> 0.10 wt%的PAn-PAAMPSA足以实现渗透和高电导率,膜电阻(R M)为2140?和87.9?分别用于碱(0.00 wt%)和ECH(10.0 wt%)。导电水凝胶的紫外可见光谱表明,带隙为2.8 eV,可在浓度> 0.10 wt%PAn-PAAMPSA的情况下测量到。基础和导电水凝胶均支持NIH / 3T3成纤维细胞的附着和生长。当通过掺入胶原蛋白(> 200μg/ mL)使基础水凝胶具有生物活性时,它也支持PC-12神经祖细胞的附着,但不支持分化。

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