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Rat motoneuron cell death in development correlates with loss of N-methyl-D-aspartate receptors.

机译:大鼠运动神经元细胞的死亡与N-甲基-D-天冬氨酸受体的丢失有关。

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摘要

New techniques were applied for maintaining viable motoneurons in rat cervical spinal cord slices to study electrical and morphological properties from postnatal day (PD) 2-49. Lucifer Yellow injections showed nine to 12, or more, viable motoneurons/slice at PD2, reduced to two to three in lamina IX by PD9. At PD2 and from PD14 onward healthy motoneurons were electrically similar to those of adults. Motoneurons exhibited variable electrical properties and morphology around PD5. They were sensitive to kainate and AMPA at all ages. The sensitivity to N-methyl-D-aspartate (NMDA) was significant at PD2, less at PD9 and virtually absent at PD14. Our observations suggest that NMDA receptors play a role in regulation of motoneuron survival in the early postnatal period, but are lost from adult motoneurons.
机译:应用新技术在大鼠颈脊髓切片中维持活的运动神经元,以研究出生后第2至49天的电学和形态学特性。 Lucifer Yellow注射显示在PD2处有9到12个或更多的可行运动神经元/切片,在PDIX的第IX层中减少到2到3个。在PD2和PD14以后,健康的运动神经元在电气上与成年人相似。单质子在PD5周围表现出可变的电学性质和形态。他们对各个年龄段的海藻酸盐和AMPA都很敏感。 PD2对N-甲基-D-天门冬氨酸(NMDA)的敏感性显着,PD9较低,而PD14实际上不存在。我们的观察结果表明,NMDA受体在产后早期在调节运动神经元存活中发挥作用,但从成年运动神经元中丢失。

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