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首页> 外文期刊>Journal of biomedical materials research. Part B, Applied biomaterials. >Neurotrophin-eluting hydrogel coatings for neural stimulating electrodes.
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Neurotrophin-eluting hydrogel coatings for neural stimulating electrodes.

机译:用于神经刺激电极的Neurotrophin洗脱水凝胶涂层。

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摘要

Improved sensory and motor prostheses for the central nervous system will require large numbers of electrodes with low electrical thresholds for neural excitation. With the eventual goal of reducing stimulation thresholds, we have investigated the use of biodegradable, neurotrophin-eluting hydrogels (i.e., poly(ethylene glycol)-poly(lactic acid), PEGPLA) as a means of attracting neurites to the surface of stimulating electrodes. PEGPLA hydrogels with release rates ranging from 1.5 to 3 weeks were synthesized. These hydrogels were applied to multielectrode arrays with sputtered iridium oxide charge-injection sites. The coatings had little impact on the iridium oxide electrochemical properties, including charge storage capacity, impedance, and voltage transients during current pulsing. Additionally, we quantitatively examined the ability of neurotrophin-eluting, PEGPLA hydrogels to promote neurite extension in vitro using a PC12 cell culture model. Hydrogels released neurotrophin (nerve growth factor, NGF) for at least 1 week, with neurite extension near that of an NGF positive control and much higher than extension seen from sham, bovine serum albumin-releasing boluses, and a negative control. These results show that neurotrophin-eluting hydrogels can be applied to multielectrode arrays, and suggest a method to improve neuron-electrode proximity, which could result in lowered electrical stimulation thresholds. Reduced thresholds support the creation of smaller electrode structures and high density electrode prostheses, greatly enhancing prosthesis control and function.
机译:用于中枢神经系统的改善的感觉和运动假体将需要大量具有低电阈值的电极用于神经刺激。为了最终降低刺激阈值,我们研究了使用可生物降解的神经营养素洗脱水凝胶(即聚乙二醇-聚乳酸PEGPLA)作为将神经突吸引到刺激电极表面的方法。合成了释放速率为1.5至3周的PEGPLA水凝胶。这些水凝胶被应用于具有溅射的氧化铱电荷注入位点的多电极阵列。涂层对氧化铱的电化学性能几乎没有影响,包括电荷存储容量,阻抗和电流脉冲过程中的电压瞬变。此外,我们定量检测了使用PC12细胞培养模型体外神经营养蛋白洗脱PEGPLA水凝胶促进神经突延伸的能力。水凝胶释放神经营养蛋白(神经生长因子,NGF)至少1周,其神经突延伸接近NGF阳性对照,并且远高于假手术,牛血清白蛋白释放弹丸和阴性对照。这些结果表明,神经营养蛋白洗脱水凝胶可应用于多电极阵列,并提出了一种改善神经元电极接近性的方法,这可能会降低电刺激阈值。降低的阈值支持创建较小的电极结构和高密度的电极假体,从而大大增强了假体的控制和功能。

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