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使用体外胶质瘢痕分析对氧化铱和铂合金丝进行比较评估。

Comparative assessment of iridium oxide and platinum alloy wires using an in vitro glial scar assay.

作者信息

Ereifej Evon S, Khan Saida, Newaz Golam, Zhang Jinsheng, Auner Gregory W, VandeVord Pamela J

机构信息

Department of Biomedical Engineering, Wayne State University, Detroit, MI, USA.

出版信息

Biomed Microdevices. 2013 Dec;15(6):917-24. doi: 10.1007/s10544-013-9780-x.

Abstract

The long-term effect of chronically implanted electrodes is the formation of a glial scar. Therefore, it is imperative to assess the biocompatibility of materials before employing them in neural electrode fabrication. Platinum alloy and iridium oxide have been identified as good candidates as neural electrode biomaterials due to their mechanical and electrical properties, however, effect of glial scar formation for these two materials is lacking. In this study, we applied a glial scarring assay to observe the cellular reactivity to platinum alloy and iridium oxide wires in order to assess the biocompatibility based on previously defined characteristics. Through real-time PCR, immunostaining and imaging techniques, we will advance the understanding of the biocompatibility of these materials. Results of this study demonstrate iridium oxide wires exhibited a more significant reactive response as compared to platinum alloy wires. Cells cultured with platinum alloy wires had less GFAP gene expression, lower average GFAP intensity, and smaller glial scar thickness. Collectively, these results indicated that platinum alloy wires were more biocompatible than the iridium oxide wires.

摘要

长期植入电极的影响是形成胶质瘢痕。因此,在将材料用于神经电极制造之前,评估其生物相容性势在必行。铂合金和氧化铱因其机械和电学性能,已被确定为神经电极生物材料的良好候选者,然而,这两种材料对胶质瘢痕形成的影响尚缺乏研究。在本研究中,我们应用胶质瘢痕形成试验来观察细胞对铂合金和氧化铱丝的反应,以便根据先前确定的特征评估生物相容性。通过实时聚合酶链反应、免疫染色和成像技术,我们将加深对这些材料生物相容性的理解。本研究结果表明,与铂合金丝相比,氧化铱丝表现出更显著的反应性反应。用铂合金丝培养的细胞GFAP基因表达较少,平均GFAP强度较低,胶质瘢痕厚度较小。总体而言,这些结果表明铂合金丝比氧化铱丝具有更好的生物相容性。

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