首页> 美国卫生研究院文献>other >EFFECTS OF EXPOSING C57BL/6J MICE TO HIGH- AND LOW-FREQUENCY AUGMENTED ACOUSTIC ENVIRONMENTS: AUDITORY BRAINSTEM RESPONSE THRESHOLDS CYTOCOCHLEOGRAMS ANTERIOR COCHLEAR NUCLEUS MORPHOLOGY AND THE ROLE OF GONADAL HORMONES
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EFFECTS OF EXPOSING C57BL/6J MICE TO HIGH- AND LOW-FREQUENCY AUGMENTED ACOUSTIC ENVIRONMENTS: AUDITORY BRAINSTEM RESPONSE THRESHOLDS CYTOCOCHLEOGRAMS ANTERIOR COCHLEAR NUCLEUS MORPHOLOGY AND THE ROLE OF GONADAL HORMONES

机译:将C57BL / 6J小鼠暴露于高频和低频增强声学环境中的作用:听觉脑干反应阈值胆囊造影前耳蜗核形态和性腺激素的作用

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摘要

Gonadectomized and intact adult C57BL/6J (B6) mice of both sexes were exposed for 12 hours nightly to an augmented acoustic environment (AAE): repetitive bursts of a 70 dB SPL noise band. The high-frequency AAE (HAAE) was a half-octave band centered at 20 kHz; the low-frequency AAE (LAAE) was a 2-8 kHz band. The effects of sex, gonadectomy, and AAE treatment on genetic progressive hearing loss (a trait of B6 mice) were evaluated by obtaining auditory brainstem response (ABR) thresholds at ages 3-, 6-, and 9-months. At 9-months of age, hair cell counts (cytocochleograms) were obtained, and morphometric measures of the anteroventral cochlear nucleus (AVCN) were obtained. LAAE treatment caused elevation in ABR thresholds (8-24kHz), with the highest thresholds occurring in intact females. LAAE treatment caused some loss of outer hair cells in the basal half of the cochlea (in addition to losses normally occurring in B6 mice), with intact females losing more cells than intact males. The loss of AVCN neurons and shrinkage of tissue volume that typically occur in 9-month-old B6 mice was lessened by LAAE treatment in intact (but not gonadectomized) male mice, whereas the degenerative changes were exacerbated in intact (but not gonadectomized) females. These LAAE effects were prominent in, but not restricted to, the tonotopic low-frequency (ventral) AVCN. HAAE treatment resulted in some loss of neurons in the high-frequency (dorsal) AVCN. In general, LAAE treatment plus male gonadal hormones (intact males) had an ameliorative effect whereas HAAE or LAAE treatment plus ovarian hormones (intact females) had a negative effect on age-related changes in the B6 auditory system.
机译:每晚将两性腺切除并完整的成年C57BL / 6J(B6)小鼠暴露于增强声环境(AAE):70 dB SPL噪声带的重复爆发,每晚12小时。高频AAE(HAAE)是一个以20 kHz为中心的半八度音带;低频AAE(LAAE)是2-8 kHz频段。通过获得3、6和9个月的听觉脑干反应(ABR)阈值,评估性别,性腺切除术和AAE治疗对遗传性进行性听力丧失(B6小鼠的一种性状)的影响。在9个月大时,获得了毛细胞计数(细胞耳蜗图),并获得了腹侧前耳蜗核(AVCN)的形态计量学指标。 LAAE治疗导致ABR阈值(8-24kHz)升高,其中完整女性的阈值最高。 LAAE治疗导致耳蜗基底半层的某些外部毛细胞损失(除了正常情况下在B6小鼠中发生的损失),完整的雌性比完整的雄性损失更多的细胞。通过LAAE治疗,在完整的(但不进行性腺切除术)雄性小鼠中,通常在9个月大的B6小鼠中发生的AVCN神经元的丢失和组织体积的收缩得到了减轻,而在完整的(但不进行性腺切除术)雌性小鼠中,退行性变化加剧了。这些LAAE效应在断层性低频(腹侧)AVCN中很明显,但不仅限于此。 HAAE治疗导致高频(背侧)AVCN中的神经元丢失。通常,LAAE治疗加雄性腺激素(男性雄性)具有改善作用,而HAAE或LAAE治疗加卵巢激素(雌性女性)对B6听觉系统中与年龄相关的变化具有负面影响。

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