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人参皂苷化合物 K 对噪声性听力损失相关的听觉功能损伤的暴露后治疗作用。

Post-exposure treatment with ginsenoside compound K ameliorates auditory functional injury associated with noise-induced hearing loss in mice.

机构信息

Department of Audiology, Nambu University, Gwangju 506-824, Republic of Korea.

出版信息

Neurosci Lett. 2011 Jan 7;487(2):217-22. doi: 10.1016/j.neulet.2010.10.026. Epub 2010 Oct 20.

Abstract

Noise-induced hearing loss (NIHL) is thought to primarily involve damage to the sensory hair cells of the cochlea via mechanical and metabolic mechanisms. Unfortunately, initial studies assessing the effectiveness of post-exposure treatment after hearing loss have yielded largely disappointing results. This study explored the effects of oral treatment with Korean red ginseng (RG) and with two bioavailable ginsenoside metabolites, ginsenoside Rh1 and ginsenoside compound K (GCK), in response to NIHL in a murine model. Pharmacological treatments began 24h after noise exposure and were continued once daily for 7 days. Central auditory function was evaluated using auditory middle latency responses, and cochlear function was determined based on transient evoked otoacoustic emissions. Additionally, cochlear hair cell morphology was investigated after noise exposure. Both Korean red ginseng and compound K reduced threshold shifts, central auditory function damage, and cochlear functional and morphological deficits. In contrast, treatment with ginsenoside Rh1 did not result in recovery of NIHL in mice. These results suggest that consumption of Korean red ginseng may facilitate recovery from noise-induced hearing loss. Furthermore, one of the active constituents in ginseng is likely ginsenoside compound K.

摘要

噪声性听力损失(NIHL)被认为主要通过机械和代谢机制导致耳蜗感觉毛细胞损伤。不幸的是,最初评估听力损失后暴露后治疗效果的研究结果大多令人失望。本研究探讨了口服红参(RG)和两种生物利用度较高的人参皂苷代谢物,人参皂苷 Rh1 和人参皂苷化合物 K(GCK)治疗对小鼠噪声性听力损失的影响。药理治疗在噪声暴露后 24 小时开始,每天一次持续 7 天。使用听觉中潜伏期反应评估中枢听觉功能,根据瞬态诱发耳声发射确定耳蜗功能。此外,还在噪声暴露后研究了耳蜗毛细胞形态。红参和化合物 K 均可降低听力阈值移位、中枢听觉功能损伤以及耳蜗功能和形态缺陷。相比之下,人参皂苷 Rh1 治疗并未导致小鼠的噪声性听力损失恢复。这些结果表明,红参的摄入可能有助于从噪声性听力损失中恢复。此外,人参的一种有效成分可能是人参皂苷化合物 K。

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