Caicedo A, Kungel M, Pujol R, Friauf E
INSERM U. 254, Laboratoire de Neurobiologie de l'Audition, Université de Montpellier I, France.
Eur J Neurosci. 1998 Mar;10(3):941-54. doi: 10.1046/j.1460-9568.1998.00104.x.
Ca2+ influx through glutamate receptors (GluRs) is thought to play a crucial part in developmental processes and neuronal plasticity. Here we have examined the spatiotemporal distribution of Ca2+-permeable GluRs in auditory brainstem neurons of the rat from birth to adulthood, using the cobalt-staining technique of Pruss and collaborators. In slices of young adult rats, 1 mM glutamate evoked intense cobalt uptake in subsets of neurons in the ventral cochlear nuclei, the medial nucleus of the trapezoid body, the lateral and the medial superior olive, and the lateral lemniscal nuclei. Neurones in the central nucleus of the inferior colliculus, and thalamic auditory nuclei appear to express few, if any, Ca2+-permeable GluRs. Thus, in adults, Ca2+-permeable GluRs are present in neurons of almost all main relay stations of the auditory brainstem. During development, cobalt-stained cells first appeared at about hearing onset (at postnatal day 12 [P12]). At P16, staining levels were highest and the pattern of distribution was already adult-like. The staining intensity slightly declined during the fourth postnatal week. In contrast, Ca2+-permeable receptors were detected in the external cortex of the inferior colliculus as early as P4. Our results show that auditory neurons, characterized by a high temporal precision in neuronal activity, display Ca2+-permeable GluRs. Because Ca2+ permeability appears at about the onset of hearing and is highest during the following 2 weeks, Ca2+ influx through GluRs is likely to be implicated in remodelling processes occurring during this ontogenetic period.
通过谷氨酸受体(GluRs)的Ca2+内流被认为在发育过程和神经元可塑性中起关键作用。在这里,我们使用普鲁斯及其合作者的钴染色技术,研究了从出生到成年大鼠听觉脑干神经元中Ca2+通透型GluRs的时空分布。在成年幼鼠的切片中,1 mM谷氨酸在腹侧耳蜗核、梯形体内侧核、外侧和内侧上橄榄核以及外侧丘系核的部分神经元中引起强烈的钴摄取。下丘中央核和丘脑听觉核中的神经元似乎很少表达(如果有的话)Ca2+通透型GluRs。因此,在成年人中,Ca2+通透型GluRs存在于听觉脑干几乎所有主要中继站的神经元中。在发育过程中,钴染色细胞最早出现在听力开始时(出生后第12天[P12])。在P16时,染色水平最高,分布模式已经与成年时相似。在出生后第四周,染色强度略有下降。相比之下,早在P4时就在下丘的外部皮质中检测到了Ca2+通透型受体。我们的结果表明,以神经元活动的高时间精度为特征的听觉神经元显示出Ca2+通透型GluRs。由于Ca2+通透性大约在听力开始时出现,并且在接下来的2周内最高,通过GluRs的Ca2+内流可能与这个个体发育时期发生的重塑过程有关。