Watanabe F, Koga K, Hakuba N, Gyo K
Department of Otolaryngology, Ehime University School of Medicine, Shigenobu-cho, Onsen-gun, 791-0295, Japan.
Neuroscience. 2001;102(3):639-45. doi: 10.1016/s0306-4522(00)00510-8.
The effects of hypothermia on ischemia-reperfusion injury of the cochlea were studied in gerbils. Hearing was assessed by sequentially recording compound action potentials before, during and after the ischemia. The degree of hair cell loss in the organ of Corti was evaluated in specimens stained with rhodamine-phalloidin and the dye Hoechst 33342. Ischemic insult was applied to the animals by occluding the bilateral vertebral arteries for 15 min under normothermic or hypothermic (rectal temperature 32 degrees C) conditions. Interruption of the blood supply to the cochlea caused a tremendous increase in the compound action potential threshold, which usually recovered to some extent with reperfusion. In the ischemia/normothermic group, the threshold did not return to the pre-ischemic level. The average increase in the threshold seven days after ischemia was 20.0 dB. Histologically, the hair cell loss increased gradually until four days after the ischemic insult. On the seventh day, the mean loss of inner and outer hair cells at the basal turn was 31.1 % and 2.4 %, respectively. In the ischemia/hypothermic group, the threshold returned to the pre-ischemic level within 30 min after reperfusion and remained stable thereafter. The mean loss of inner and outer hair cells on the seventh day was 0.1 % and 0.2 %, respectively. These results indicate that hypothermia can prevent inner ear damage, which otherwise occurs after transient ischemia of the cochlea.
在沙鼠身上研究了低温对耳蜗缺血再灌注损伤的影响。通过在缺血前、缺血期间和缺血后依次记录复合动作电位来评估听力。用罗丹明 - 鬼笔环肽和染料Hoechst 33342染色的标本评估柯蒂氏器中毛细胞损失的程度。在常温或低温(直肠温度32摄氏度)条件下,通过阻断双侧椎动脉15分钟对动物施加缺血性损伤。耳蜗血液供应中断导致复合动作电位阈值大幅增加,再灌注后通常会有一定程度的恢复。在缺血/常温组中,阈值未恢复到缺血前水平。缺血后七天阈值的平均增加为20.0分贝。组织学上,毛细胞损失在缺血性损伤后四天内逐渐增加。在第七天,基底转内毛细胞和外毛细胞的平均损失分别为31.1%和2.4%。在缺血/低温组中,再灌注后30分钟内阈值恢复到缺血前水平,此后保持稳定。第七天内毛细胞和外毛细胞的平均损失分别为0.1%和0.2%。这些结果表明,低温可以预防内耳损伤,否则这种损伤会在耳蜗短暂缺血后发生。