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首页> 外文期刊>Journal of Controlled Release: Official Journal of the Controlled Release Society >Controlled release nanoparticle-embedded coatings reduce the tissue reaction to neuroprostheses
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Controlled release nanoparticle-embedded coatings reduce the tissue reaction to neuroprostheses

机译:控释纳米颗粒包埋的涂层减少了组织对神经假体的反应

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摘要

Controlled release coatings were developed for neuroprostheses with the aim of combating the tissue reaction following implantation in the brain. The coatings consist of poly(propylene sulfide) drug-eluting nanoparticles embedded in a poly(ethylene oxide) matrix. The nanoparticles are loaded with dexamethasone, an anti-inflammatory drug known to have an effect on the cells activated during the damage caused by implantation. The nanoparticles are not affected by the coating process and the drug remains bioactive after it is released. The coating was applied to microfabricated cortical neuroprostheses consisting of platinum and polyimide. Coated drug-eluting devices were implanted in the cortex of rats. After implantation the matrix dissolves, exposing the electrode surfaces, while the nanoparticles remain in the vicinity of the tissue-implant interface. Using electrical impedance spectroscopy and comparative histology, a long-term decrease in the tissue response in comparison to control devices was observed. These coatings can therefore be used to increase the reliability and long-term efficacy of neuroprostheses.
机译:开发了用于神经假体的控释包衣,旨在对抗植入大脑后的组织反应。涂层由嵌入聚环氧乙烷基质中的聚(硫化丙烯)药物洗脱纳米颗粒组成。纳米颗粒中装有地塞米松,地塞米松是一种抗炎药,已知对植入引起的损伤过程中活化的细胞有影响。纳米颗粒不受包衣过程的影响,药物释放后仍具有生物活性。该涂层被应用于由铂和聚酰亚胺组成的微型皮质神经假体。涂层药物洗脱装置被植入大鼠的皮质。植入后,基质溶解,露出电极表面,而纳米颗粒保留在组织-植入物界面附近。使用电阻抗光谱法和比较组织学,与对照装置相比,观察到组织反应的长期降低。因此,这些涂层可用于提高神经假体的可靠性和长期功效。

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