Shoji F, Yamasoba T, Magal E, Dolan D F, Altschuler R A, Miller J M
Kresge Hearing Research Institute, The University of Michigan, 1301 East Ann Street, Ann Arbor, MI, USA.
Hear Res. 2000 Apr;142(1-2):41-55. doi: 10.1016/s0378-5955(00)00007-1.
We examined the effectiveness of glial cell line-derived neurotrophic factor (GDNF) to attenuate cochlear damage from intense noise stress. Subjects were exposed to 115 dB SPL one octave band noise centered at 4 kHz for 5 h. They received artificial perilymph with or without GDNF into the left scala tympani at 0.5 microliter/h from 4 days before noise exposure through 8 days following noise exposure. Different concentrations of GDNF (1 ng/ml, 10 ng/ml, 100 ng/ml, and 1 microgram/ml) were applied chronically directly into the guinea pig cochlea via a microcannula and osmotic pump. Noise-induced hearing loss was assessed with pure tone auditory brainstem responses (at 2, 4, 8 and 20 kHz), measured prior to surgery, 1 day before noise exposure, and 7 days following noise exposure. Subjects were killed on day 8 following exposure for histological preparation and quantitative assessment of hair cell (HC) damage. A dose-dependent protective effect of GDNF on both sensory cell preservation and hearing function was found in the treated ears. At 1 ng/ml, GDNF showed no significant protection; at 10 ng/ml, GDNF showed significant HC protection; and at 100ng/ml, it was greater and bilateral. At 1 microgram/ml, GDNF appeared to have a toxic effect under noise stress in some cochleae. These findings indicate that GDNF at certain concentrations can effectively protect the inner ear from noise-induced hearing loss.
我们研究了胶质细胞源性神经营养因子(GDNF)减轻强噪声应激所致耳蜗损伤的有效性。研究对象暴露于以4kHz为中心的115dB SPL倍频带噪声中5小时。从噪声暴露前4天至噪声暴露后8天,他们以0.5微升/小时的速度将含或不含GDNF的人工外淋巴注入左侧鼓阶。通过微插管和渗透泵将不同浓度的GDNF(1ng/ml、10ng/ml、100ng/ml和1μg/ml)长期直接注入豚鼠耳蜗。在手术前、噪声暴露前1天以及噪声暴露后7天,用纯音听性脑干反应(2、4、8和20kHz)评估噪声性听力损失。在暴露后第8天处死研究对象,进行组织学制备和毛细胞(HC)损伤的定量评估。在接受治疗的耳中发现GDNF对感觉细胞保存和听力功能具有剂量依赖性保护作用。在1ng/ml时,GDNF未显示出明显的保护作用;在10ng/ml时,GDNF显示出对HC的显著保护作用;在100ng/ml时,保护作用更强且为双侧性。在1μg/ml时,GDNF在某些耳蜗的噪声应激下似乎具有毒性作用。这些发现表明,特定浓度的GDNF可有效保护内耳免受噪声性听力损失。