Bartolami S, Mayat E, Lippe W R, Rebillard G, Pujol R
INSERM-U 254, Laboratoire de Neurobiologie de l'Audition, Hôpital St Charles, Montpellier, France.
Int J Dev Neurosci. 1992;10(1):31-6. doi: 10.1016/0736-5748(92)90004-j.
We previously reported that the inositol phosphates (IPs) synthesis is induced by muscarinic agonists in the rat cochlea and that this stimulation is maximal at postnatal day 12. This peak response is concomitant with the onset of the efferent synaptogenesis at the outer hair cell level. Whether the correlation between this neuronal plasticity and the enhanced IPs formation is unique to the rat or a general feature of the developing vertebrate cochlea is not known. To examine this question, we measured, in the presence of LiCl, the accumulation of (3H)-IPs induced by carbachol, in the developing chick cochlear duct during a period ranging from embryonic day (E) 8 to post-hatching day (P) 20. Carbachol (1 mM) causes a significant increase of IPs formation relative to basal values at all ages. This IPs accumulation is maximal at E8 (1854% of the basal level), then, rapidly decreases until P13 when it reaches a steady-state level of 294% of the basal level. Strikingly, this gradual decline in IPs formation is interrupted between E15 and E19, by a transient increase in IPs synthesis. This rise peaks at E16 with a stimulation value of 757% of the control level. This maximal stimulation is inhibited by atropine in a dose-dependent manner, as is the case at E9, suggesting the involvement of muscarinic receptors. Interestingly, the occurrence of the peak response is concomitant with the plastic events associated with the maturation of the efferent innervation of the cochlear duct. Thus, these results suggest that there may be a correlation between cochlear plasticity and enhanced IPs synthesis, which is not species-specific.(ABSTRACT TRUNCATED AT 250 WORDS)
我们之前报道过,肌醇磷酸(IPs)的合成在大鼠耳蜗中可被毒蕈碱激动剂诱导,且这种刺激在出生后第12天达到最大值。这一峰值反应与外毛细胞水平传出突触形成的开始同时出现。这种神经元可塑性与IPs形成增强之间的相关性是大鼠所特有的,还是发育中的脊椎动物耳蜗的普遍特征,目前尚不清楚。为了研究这个问题,我们在LiCl存在的情况下,测量了从胚胎第8天(E)到孵化后第20天(P)期间,卡巴胆碱诱导发育中的雏鸡耳蜗管中(3H)-IPs的积累。卡巴胆碱(1 mM)在所有年龄段都会导致IPs形成相对于基础值显著增加。这种IPs积累在E8时最大(为基础水平的1854%),然后迅速下降,直到P13时达到基础水平294%的稳态水平。引人注目的是,IPs形成的这种逐渐下降在E15和E19之间被IPs合成的短暂增加所中断。这种增加在E16达到峰值,刺激值为对照水平的757%。这种最大刺激与E9时一样,被阿托品以剂量依赖的方式抑制,表明毒蕈碱受体参与其中。有趣的是,峰值反应的出现与耳蜗管传出神经支配成熟相关的可塑性事件同时发生。因此,这些结果表明耳蜗可塑性与IPs合成增强之间可能存在相关性,且这并非物种特异性的。(摘要截断于250字)