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首页> 外文期刊>Neurochemical research >Salicylate initiates apoptosis in the spiral ganglion neuron of guinea pig cochlea by activating caspase-3.
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Salicylate initiates apoptosis in the spiral ganglion neuron of guinea pig cochlea by activating caspase-3.

机译:水杨酸酯通过激活caspase-3来启动豚鼠耳蜗螺旋神经节神经元的凋亡。

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Salicylate-induced ototoxicity leading to sensorineural hearing loss (SNHL) and tinnitus is well documented. However, the exact mechanisms are poorly defined. Caspase-3 is a member of the class of effector caspases and has been activated in nearly every model of apoptosis. To examine its role in salicylate-induced injury, we subjected guinea pigs to treatment with a specific inhibitor zDEVD-FMK via the round window niche (RWN) followed by a systemic injection of salicylate at a dose of 200 mg . kg(-1) . d(-1) i.p. for 10 consecutive days. For those animals administered with salicylate, immunohistochemical studies revealed that caspase-3 was activated in the spiral ganglion neurons (SGNs) and method of terminal deoxynucleotidyl transferase-mediated dUTP-biotin nick end-labeling (TUNEL) to identify neuronal apoptosis showed that fragmented nuclei were distributed in Rosenthal's canal. Topical administration of the zDEVD-FMK at a concentration of 500 mM blocked caspase-3 activation and had an effect in reducing the number of TUNEL-positive auditory neurons. In contrast, the inhibitor at a concentration of 125 or 250 mM caused no variation in the expression of activated caspase-3, or in the ratio of TUNEL-positive neurons. These results indicate that caspase-3 is a crucial mediator of apoptosis induced by salicylate in the primary auditory neuron in vivo, and suggest that the specific inhibitor at a relatively high concentration may be therapeutically beneficial in salicylate-induced apoptosis.
机译:水杨酸酯引起的耳毒性导致感觉神经性听力损失(SNHL)和耳鸣已被充分记录。但是,确切的机制定义不清。 Caspase-3是一类效应胱天蛋白酶的成员,几乎在每种凋亡模型中均已被激活。为了检查其在水杨酸盐诱导的伤害中的作用,我们通过圆形窗口壁iche(RWN)对豚鼠进行了特异性抑制剂zDEVD-FMK的治疗,然后以200 mg的剂量全身注射水杨酸盐。千克(-1) d(-1)i.p.连续10天。对于那些注射了水杨酸盐的动物,免疫组织化学研究表明,螺旋神经节神经元(SGNs)中激活了caspase-3,并且末端脱氧核苷酸转移酶介导的dUTP-生物素缺口末端标记法(TUNEL)可以识别神经元凋亡,表明核细胞碎片被分配在卢森塔尔的运河中。以500 mM的浓度局部施用zDEVD-FMK可阻止caspase-3活化,并具有减少TUNEL阳性听觉神经元数量的作用。相反,浓度为125或250 mM的抑制剂不会引起活化的caspase-3的表达或TUNEL阳性神经元的比例发生变化。这些结果表明,caspase-3是水杨酸酯在体内初级听觉神经元体内诱导细胞凋亡的重要介质,并表明相对较高浓度的特异性抑制剂可能在水杨酸酯诱导的细胞凋亡中具有治疗优势。

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