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将去势和未去势的C57BL/6J小鼠暴露于高频增强声学环境的影响:听觉脑干反应阈值和细胞耳蜗图。

Effects of exposing gonadectomized and intact C57BL/6J mice to a high-frequency augmented acoustic environment: Auditory brainstem response thresholds and cytocochleograms.

作者信息

Willott James F, VandenBosche Justine, Shimizu Toru, Ding Da-Lian, Salvi Richard

机构信息

Department of Psychology, University of South Florida, 4202 E. Fowler Ave. PCD4118G, Tampa, FL 33620, USA.

出版信息

Hear Res. 2006 Nov;221(1-2):73-81. doi: 10.1016/j.heares.2006.07.016. Epub 2006 Sep 14.

Abstract

Gonadectomized and surgically intact adult C57BL/6J (B6) mice of both sexes were exposed for 12h nightly to a high-frequency augmented acoustic environment (AAE): repetitive bursts of a half-octave noise band centered at 20 kHz, 70 dB SPL. The effects of sex, gonadectomy, and AAE treatment on genetic progressive hearing loss (exhibited by B6 mice) were evaluated by obtaining auditory brainstem response thresholds at ages 3-, 6-, and 9-months; hair cell counts (cytocochleograms) were obtained at 9 months. A sex difference in the rate of genetic progressive hearing loss in B6 mice (observed by earlier studies) was confirmed, with females exhibiting a faster rate of threshold elevations and more severe loss of hair cells at age 9 months. Gonadectomy had no consistent effects on the rate or severity of hearing loss in non-exposed mice of either sex. An unexpected finding was that the high-frequency AAE treatment caused additional ABR threshold elevations and hair cell loss. In an earlier study, the same high-frequency AAE treatment on DBA/2J mice ameliorated hearing loss. The most severe AAE-induced losses occurred in surgically intact females, suggesting a potentiating effect of ovarian hormone(s).

摘要

对成年去势和手术未处理的两性C57BL/6J(B6)小鼠,每晚暴露于高频增强声学环境(AAE)12小时:以20kHz为中心的半倍频程噪声带的重复脉冲,声压级70dB SPL。通过在3个月、6个月和9个月龄时获取听觉脑干反应阈值,评估性别、去势和AAE处理对遗传性进行性听力损失(B6小鼠所表现出的)的影响;在9个月龄时获取毛细胞计数(细胞耳蜗图)。证实了B6小鼠遗传性进行性听力损失速率存在性别差异(早期研究观察到),雌性在9个月龄时表现出更快的阈值升高速率和更严重的毛细胞损失。去势对两性未暴露小鼠的听力损失速率或严重程度没有一致影响。一个意外发现是高频AAE处理导致额外的ABR阈值升高和毛细胞损失。在早期研究中,对DBA/2J小鼠进行相同的高频AAE处理可改善听力损失。最严重的AAE诱导损失发生在手术未处理的雌性小鼠中,提示卵巢激素的增强作用。

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