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辣根过氧化物酶染料示踪和胚胎听纹状神经节细胞在大鼠听神经干中的移植。

Horseradish peroxidase dye tracing and embryonic statoacoustic ganglion cell transplantation in the rat auditory nerve trunk.

机构信息

Center for Hearing and Communication Research, Karolinska University Hospital, Stockholm, Sweden.

出版信息

Brain Res. 2011 Mar 4;1377:41-9. doi: 10.1016/j.brainres.2010.12.078. Epub 2011 Jan 6.

Abstract

At present severe damage to hair cells and sensory neurons in the inner ear results in non-treatable auditory disorders. Cell implantation is a potential treatment for various neurological disorders and has already been used in clinical practice. In the inner ear, delivery of therapeutic substances including neurotrophic factors and stem cells provide strategies that in the future may ameliorate or restore hearing impairment. In order to describe a surgical auditory nerve trunk approach, in the present paper we injected the neuronal tracer horseradish peroxidase (HRP) into the central part of the nerve by an intra cranial approach. We further evaluated the applicability of the present approach by implanting statoacoustic ganglion (SAG) cells into the same location of the auditory nerve in normal hearing rats or animals deafened by application of β-bungarotoxin to the round window niche. The HRP results illustrate labeling in the cochlear nucleus in the brain stem as well as peripherally in the spiral ganglion neurons in the cochlea. The transplanted SAGs were observed within the auditory nerve trunk but no more peripheral than the CNS-PNS transitional zone. Interestingly, the auditory nerve injection did not impair auditory function, as evidenced by the auditory brainstem response. The present findings illustrate that an auditory nerve trunk approach may well access the entire auditory nerve and does not compromise auditory function. We suggest that such an approach might compose a suitable route for cell transplantation into this sensory cranial nerve.

摘要

目前,内耳中的毛细胞和感觉神经元的严重损伤导致无法治疗的听觉障碍。细胞植入是治疗各种神经疾病的一种潜在方法,已经在临床实践中得到应用。在内耳中,包括神经营养因子和干细胞在内的治疗物质的传递提供了策略,这些策略可能在未来改善或恢复听力损伤。为了描述一种手术听神经干方法,本文作者通过颅内途径将神经元示踪剂辣根过氧化物酶(HRP)注入神经的中央部分。作者进一步通过将前庭下神经节(SAG)细胞植入正常听力大鼠或用β-银环蛇毒素处理圆窗龛使动物耳聋的同一听神经位置,评估了该方法的适用性。HRP 结果表明,在脑干耳蜗核以及耳蜗中的螺旋神经节神经元中进行了标记。移植的 SAG 被观察到在听神经干内,但没有超出中枢神经系统-周围神经系统过渡区更远的位置。有趣的是,听神经注射并没有损害听觉功能,这可以通过听觉脑干反应来证明。本研究结果表明,听神经干方法可以很好地进入整个听神经,并且不会损害听觉功能。作者提出,这种方法可能构成将细胞移植到这种感觉颅神经的合适途径。

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