Kopke R D, Weisskopf P A, Boone J L, Jackson R L, Wester D C, Hoffer M E, Lambert D C, Charon C C, Ding D L, McBride D
Department of Defense Spatial Orientation Center, Naval Medical Center San Diego, San Diego, CA 92134-2200, USA.
Hear Res. 2000 Nov;149(1-2):138-46. doi: 10.1016/s0378-5955(00)00176-3.
The effects of a combination of two antioxidant compounds were studied in a chinchilla model of noise-induced hearing loss. After obtaining baseline hearing thresholds using inferior colliculus evoked potentials, chinchillas were exposed for 6 h to octave band noise centered at 4 kHz (105 dB SPL). Post-noise thresholds were obtained 1 h after the noise exposure, and then animals received either saline or salicylate and N-L-acetylcysteine combination. Another group received antioxidant treatment 1 h prior to noise. Hearing was tested at 1, 2 and 3 weeks post-noise. Subsequently, the cochleae were harvested, and cytocochleograms were prepared. There was a 20-40 dB SPL threshold shift at 3 weeks for tested controls. Permanent threshold shifts (PTS) were significantly reduced (P<0.05) to approximately 10 dB for the pre-treatment group at week 3. The PTS for the post-treatment group at week 3 was similar to the pre-treatment group at 1 and 2 kHz (0-10 dB) but was intermediate between the control and pre-treatment groups at 4 and 8 kHz (23 dB). Animals pre-treated with antioxidant had a significant reduction in hair cell loss but those post-treated with antioxidant had no protection from hair cell loss. These findings demonstrate the feasibility of reduction of noise-induced hearing loss using clinically available antioxidant compounds.
在栗鼠噪声性听力损失模型中研究了两种抗氧化剂化合物组合的效果。使用下丘诱发电位获得基线听力阈值后,将栗鼠暴露于以4 kHz为中心的倍频程带噪声中6小时(105 dB SPL)。在噪声暴露1小时后获得噪声暴露后的阈值,然后动物接受生理盐水或水杨酸盐与N-L-乙酰半胱氨酸的组合。另一组在噪声暴露前1小时接受抗氧化剂治疗。在噪声暴露后1、2和3周测试听力。随后,收获耳蜗并制备细胞耳蜗图。测试对照组在3周时出现20-40 dB SPL的阈值偏移。预处理组在第3周时永久性阈值偏移(PTS)显著降低(P<0.05)至约10 dB。后处理组在第3周时在1和2 kHz处的PTS与预处理组相似(0-10 dB),但在4和8 kHz处介于对照组和预处理组之间(23 dB)。用抗氧化剂预处理的动物毛细胞损失显著减少,但用抗氧化剂后处理的动物没有免受毛细胞损失的影响。这些发现证明了使用临床可用的抗氧化剂化合物减少噪声性听力损失的可行性。