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掺入神经营养因子-3的聚吡咯对促进听觉神经元轴突生长的作用。

The effect of polypyrrole with incorporated neurotrophin-3 on the promotion of neurite outgrowth from auditory neurons.

作者信息

Richardson Rachael T, Thompson Brianna, Moulton Simon, Newbold Carrie, Lum May Ghee, Cameron Adrian, Wallace Gordon, Kapsa Robert, Clark Graeme, O'Leary Stephen

机构信息

The Bionic Ear Institute, 384 Albert Street, East Melbourne, Vic. 3002, Australia.

出版信息

Biomaterials. 2007 Jan;28(3):513-23. doi: 10.1016/j.biomaterials.2006.09.008. Epub 2006 Sep 27.

Abstract

This research aims to improve the nerve-electrode interface of the cochlear implant using polymer technology to encourage neuron survival, elongation and adhesion to the electrodes. Polypyrrole (Ppy) doped with p-toluene sulphonate (pTS) is an electroactive polymer into which neurotrophin-3 (NT3) can be incorporated. Ppy/pTS+/-NT3 was synthesised over gold electrodes and used as a surface for auditory neuron explant culture. Neurite outgrowth from explants grown on Ppy/pTS was equivalent to tissue culture plastic but improved with the incorporation of NT3 (Ppy/pTS/NT3). Electrical stimulation of Ppy/pTS/NT3 with a biphasic current pulse, as used in cochlear implants, significantly improved neurite outgrowth from explants. Using (125)I-NT3, it was shown that low levels of NT3 passively diffused from Ppy/pTS/NT3 during normal incubation and that electrical stimulation enhanced the release of biologically active NT3 in quantities adequate for neuron survival. Furthermore, Ppy/pTS/NT3 and its constituents were not toxic to auditory neurons and the Ppy/pTS/NT3 coating on gold electrodes did not alter impedance. If applied to the cochlear implant, Ppy/pTS/NT3 will provide a biocompatible, low-impedance substrate for storage and release of NT3 to help protect auditory neurons from degradation after sensorineural hearing loss and encourage neurite outgrowth towards the electrodes.

摘要

本研究旨在利用聚合物技术改善人工耳蜗的神经-电极界面,以促进神经元存活、延伸并附着于电极。掺杂对甲苯磺酸盐(pTS)的聚吡咯(Ppy)是一种可掺入神经营养因子-3(NT3)的电活性聚合物。在金电极上合成了Ppy/pTS+/-NT3,并将其用作听觉神经元外植体培养的表面。在Ppy/pTS上生长的外植体的神经突生长与组织培养塑料相当,但加入NT3(Ppy/pTS/NT3)后有所改善。如人工耳蜗中所使用的,用双相电流脉冲对Ppy/pTS/NT3进行电刺激,可显著改善外植体的神经突生长。使用(125)I-NT3表明,在正常孵育期间,低水平的NT3从Ppy/pTS/NT3被动扩散,并且电刺激增强了生物活性NT3的释放,其释放量足以维持神经元存活。此外,Ppy/pTS/NT3及其成分对听觉神经元无毒,金电极上的Ppy/pTS/NT3涂层不会改变阻抗。如果应用于人工耳蜗,Ppy/pTS/NT3将提供一种生物相容性好、低阻抗的基质,用于储存和释放NT3,以帮助保护听觉神经元在感音神经性听力损失后不发生退化,并促进神经突向电极生长。

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