Near-infrared light protects residual hearing by preserving spiral ganglion neurons in an animal Model of CI Surgery.

IF 1.4 4区 医学 Q2 AUDIOLOGY & SPEECH-LANGUAGE PATHOLOGY
Max Meuser, Sivan Faraj, Susanne Schwitzer, Arne Ernst, Rainer Seidl, Patrick Boyle, Dietmar Basta, Moritz Gröschel
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Abstract

Introduction: Given that today's cochlear implant (CI) candidates frequently present with substantial residual low-frequency hearing, the preservation of residual hearing is becoming an increasingly crucial but as yet inadequately resolved aspect of CI surgery. A recent study has shown that a 15-minute treatment with light in the red to near-infrared range (NIR) before the insertion of a CI array resulted in a significant reduction of hearing loss, especially in the frequency range of residual hearing, accompanied by significant conservation of outer hair cells. Given that the total number of rescued hair cells was insufficient to account for the substantial reduction in hearing loss observed, the present study aims to investigate the potential protective effect of NIR on spiral ganglion neurons and ribbon synapses in the context of CI surgery.

Methods: Guinea pigs underwent initial auditory brainstem response (ABR) recordings separately for each ear. Subsequently, unilateral NIR irradiation of the cochlea was performed, followed by bilateral insertion of guinea pig-sized electrode arrays. After 4 weeks, the ABR measurement was repeated and the cochleae were collected for histological analysis of spiral ganglion neurons and ribbon synapses.

Results: A significant reduction of hearing loss was found on the NIR treated side across the entire frequency range tested. The number of ribbon synapses was not affected by the insertion of an electrode array, and could therefore, not be influenced by NIR treatment. Spiral ganglion neurons were significantly reduced 4 weeks after implantation. This effect was rescued by NIR treatment, specifically in the basal portion of the cochlea.

Conclusion: These findings show a neuroprotective effect of NIR on SGNs, which may be crucial not only for the protection of residual hearing but also for the electrical stimulation of SGNs via a CI.

近红外光通过保存螺旋神经节神经元保护耳聋动物模型。
导言:鉴于今天的人工耳蜗(CI)候选人经常出现大量的低频听力残余,保留残余听力正成为CI手术中越来越重要但尚未充分解决的方面。最近的一项研究表明,在插入CI阵列之前,用红光到近红外(NIR)范围内的光进行15分钟的治疗,可以显著减少听力损失,特别是在残余听力的频率范围内,同时显著保护外毛细胞。鉴于挽救的毛细胞总数不足以解释所观察到的听力损失的实质性减少,本研究旨在研究NIR在CI手术背景下对螺旋神经节神经元和带状突触的潜在保护作用。方法:对豚鼠每只耳分别进行初次听觉脑干反应(ABR)记录。随后,对耳蜗进行单侧近红外照射,然后在双侧插入豚鼠大小的电极阵列。4周后再次测定ABR,采集耳蜗进行螺旋神经节神经元和带状突触的组织学分析。结果:在整个测试频率范围内,近红外治疗侧的听力损失显著减少。带状突触的数量不受电极阵列插入的影响,因此不受近红外处理的影响。螺旋神经节神经元在植入4周后明显减少。这种效果通过近红外治疗得以恢复,特别是在耳蜗的基底部分。结论:这些发现表明NIR对sgn具有神经保护作用,这可能不仅对保护残余听力至关重要,而且对通过CI电刺激sgn至关重要。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
Audiology and Neuro-Otology
Audiology and Neuro-Otology 医学-耳鼻喉科学
CiteScore
3.20
自引率
6.20%
发文量
35
审稿时长
>12 weeks
期刊介绍: ''Audiology and Neurotology'' provides a forum for the publication of the most-advanced and rigorous scientific research related to the basic science and clinical aspects of the auditory and vestibular system and diseases of the ear. This journal seeks submission of cutting edge research opening up new and innovative fields of study that may improve our understanding and treatment of patients with disorders of the auditory and vestibular systems, their central connections and their perception in the central nervous system. In addition to original papers the journal also offers invited review articles on current topics written by leading experts in the field. The journal is of primary importance for all scientists and practitioners interested in audiology, otology and neurotology, auditory neurosciences and related disciplines.
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