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发育过程中接触多氯联苯混合物Aroclor 1254会导致成年大鼠脑干听觉诱发电位出现低频变化。

Developmental exposure to Aroclor 1254 produces low-frequency alterations in adult rat brainstem auditory evoked responses.

作者信息

Herr D W, Goldey E S, Crofton K M

机构信息

National Health and Environmental Effects Research Laboratory, U.S. Environmental Protection Agency, Research Triangle Park, North Carolina, 27711, USA.

出版信息

Fundam Appl Toxicol. 1996 Sep;33(1):120-8. doi: 10.1006/faat.1996.0149.

Abstract

Developmental exposure of Long-Evans rats to 0, 1, 4, or 8 mg/kg/day Aroclor 1254 (A1254) from Gestational Day 6 through Postnatal Day 21 produces an elevated behavioral threshold for a 1-kHz tone. Brainstem auditory evoked responses (BAERs) were assessed in a subset of these animals (about 1 year old) using filtered clicks at 1 (65 and 80 dB SPL), 4 (60 and 80 dB SPL), 16 (40 and 80 dB SPL), and 32 (40 and 80 dB SPL) kHz. Aroclor 1254 decreased BAER amplitudes at 1 and 4 kHz, but not at 16 or 32 kHz. A dose-related decrease in the baseline-to-peak P1A amplitude was observed for the 1-kHz (80-dB) stimulus. Doses of 1, 4, or 8 mg/kg/day A1254 decreased the peak-to-peak amplitude of both P1AN1 and P1BN1 for a 1-kHz (80-dB) stimulus. Doses of 4 and 8 mg/kg/day A1254 decreased the peak-to-peak amplitude of N1P2 and P2N2 for a 4-kHz (60-dB) or 1-kHz (80-dB) stimulus. At 8 mg/kg/day, A1254 also increased the latency of peak P4 at 1 kHz (65 dB). The decreases in peak P1A amplitudes are consistent with a dysfunction of the cochlea and/or auditory nerve. Together, the data confirm that developmental exposure of rats to A1254 produces a permanent low- to mid-frequency auditory dysfunction and suggest a cochlear and/or auditory nerve site of action.

摘要

从妊娠第6天到出生后第21天,将Long-Evans大鼠发育暴露于0、1、4或8毫克/千克/天的多氯联苯混合物Aroclor 1254(A1254),会使1千赫兹音调的行为阈值升高。在这些动物的一个亚组(约1岁)中,使用1(65和80分贝声压级)、4(60和80分贝声压级)、16(40和80分贝声压级)和32(40和80分贝声压级)千赫兹的滤波短声评估脑干听觉诱发电位(BAERs)。Aroclor 1254降低了1和4千赫兹时的BAER振幅,但在16或32千赫兹时没有降低。对于1千赫兹(80分贝)的刺激,观察到基线到峰值P1A振幅呈剂量相关下降。1、4或8毫克/千克/天的A1254剂量降低了1千赫兹(80分贝)刺激下P1AN1和P1BN1的峰峰值振幅。4和8毫克/千克/天的A125剂量降低了4千赫兹(60分贝)或1千赫兹(80分贝)刺激下N1P2和P2N2的峰峰值振幅。在8毫克/千克/天的剂量下,A1254还增加了1千赫兹(65分贝)时峰值P4的潜伏期。峰值P1A振幅的降低与耳蜗和/或听神经功能障碍一致。总之,数据证实大鼠发育暴露于A1254会产生永久性的低频至中频听觉功能障碍,并提示作用部位为耳蜗和/或听神经。

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