Suppr超能文献

基于硅胶的负载AC102的人工耳蜗涂层可在人工耳蜗植入动物模型中保护残余听力。

Silicone-based AC102-loaded cochlear implant coatings protect residual hearing in an animal model of cochlear implantation.

作者信息

Nieratschker Michael, Mistrik Pavel, Petrasek Zdenek, Yildiz Erdem, Gadenstaetter Anselm J, Gerlitz Matthias, Kramer Anne-Margarethe, Kwiatkowska Monika, Braun Susanne, Schlingensiepen Reimar, Honeder Clemens, Arnoldner Christoph

机构信息

Department of Otorhinolaryngology, Head and Neck Surgery, Vienna General Hospital, Medical University of Vienna, Vienna, Austria; Christian Doppler Laboratory for Inner Ear Research, Department of Otorhinolaryngology, Medical University of Vienna, Vienna, Austria.

MED-EL Medical Electronics, Innsbruck, Austria.

出版信息

Hear Res. 2024 Dec;454:109150. doi: 10.1016/j.heares.2024.109150. Epub 2024 Nov 12.

Abstract

Cochlear implant users with residual hearing benefit synergistically from combined electrical stimulation via the cochlear implant and preserved residual hearing after surgery. However, direct mechanical trauma and subsequent inflammation may deteriorate hearing function. AC102, a novel otoprotective pyridoindole with anti-apoptotic and anti-oxidative properties significantly improved hearing recovery following cochlear implantation when administered intratympanically prior to surgery. Additionally, AC102 exerts neurotrophic effects, possibly aiding in the preservation of auditory nerve fibers and spiral ganglion neurons. Rapid clearance of the drug, however, might be a limiting factor to further attenuate the inflammatory response and maintain neuronal health. The aim of the current study was to design an AC102-loaded electrode array for sustained drug delivery and investigate its effects in hearing preservation cochlear implantation. First, the release-kinetics of AC102 were investigated in vitro and modelled by the Higuchi equation of drug release. An electrode array coated with 10 % AC102 was manufactured, its release kinetics evaluated, and subsequently tested in vivo. 20 normal hearing Mongolian gerbils were unilaterally implanted with an AC102-loaded or an unloaded control electrode. Compound action potentials were measured prior to cochlear implantation and serially over 28 days. Hair cells, inner hair cell synapses, and auditory nerve fibers were quantified in cochlear whole-mounts by immunofluorescence staining. AC102 release from silicone coating could be predictably modelled by the Higuchi equation of drug release. The electrode array with an AC102-silicone depot enabled non-linear sustained drug release with initially higher release concentrations. In vivo, the AC102-loaded electrode array significantly recovered auditory threshold shifts near the maximum insertion depth over 28 days. In the apical region, a significant recovery was noticed only until day 14, after which threshold shifts aligned between groups. Histologically, AC102-loaded electrodes significantly preserved outer hair cells apical of the maximum insertion depth and inner hair cells and neuronal structures at the tip of the inserted electrode. In conclusion, the drug-loaded electrode arrays could predictably release AC102 over a period of 28 days. AC102 enabled the restoration of auditory thresholds near the area of maximum insertion, which is the desired region to be preserved in cochlear implant recipients with residual hearing.

摘要

有残余听力的人工耳蜗使用者通过人工耳蜗的电刺激和术后保留的残余听力协同受益。然而,直接的机械创伤和随后的炎症可能会使听力功能恶化。AC102是一种具有抗凋亡和抗氧化特性的新型耳保护吡啶吲哚,在手术前经鼓室内给药时,能显著改善人工耳蜗植入后的听力恢复。此外,AC102具有神经营养作用,可能有助于保留听神经纤维和螺旋神经节神经元。然而,药物的快速清除可能是进一步减轻炎症反应和维持神经元健康的一个限制因素。本研究的目的是设计一种负载AC102的电极阵列用于持续药物递送,并研究其在听力保留型人工耳蜗植入中的作用。首先,在体外研究AC102的释放动力学,并通过药物释放的Higuchi方程进行建模。制造了一种涂有10%AC102的电极阵列,评估其释放动力学,随后在体内进行测试。20只正常听力的蒙古沙鼠单侧植入负载AC102或未负载的对照电极。在人工耳蜗植入前和连续28天内测量复合动作电位。通过免疫荧光染色对耳蜗整装片中的毛细胞、内毛细胞突触和听神经纤维进行定量分析。硅胶涂层中AC102的释放可以通过药物释放的Higuchi方程进行可预测的建模。带有AC102-硅胶储存库的电极阵列能够实现非线性持续药物释放,初始释放浓度较高。在体内,负载AC102的电极阵列在28天内显著恢复了接近最大插入深度处的听觉阈值变化。在顶端区域,仅在第14天之前观察到显著恢复,之后各组之间的阈值变化趋于一致。组织学上,负载AC102的电极显著保留了最大插入深度顶端的外毛细胞以及插入电极尖端处的内毛细胞和神经元结构。总之,载药电极阵列能够在28天内可预测地释放AC102。AC102能够恢复接近最大插入区域的听觉阈值,这是有残余听力的人工耳蜗植入受者希望保留的区域。

文献AI研究员

20分钟写一篇综述,助力文献阅读效率提升50倍。

立即体验

用中文搜PubMed

大模型驱动的PubMed中文搜索引擎

马上搜索

文档翻译

学术文献翻译模型,支持多种主流文档格式。

立即体验