Physiological and Pharmacological Studies on Cervical Motor Neurons in Slices Prepared from Neonatal and Aged Mice

N. Hori, Z. Xu, N. Akaike, Y. Tan, D. Carpenter
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Abstract

The effects of age on the physiological properties of cervical motor neurons were examined in slices made from an excised spinal cord graft of ICR mice from the second day after birth to age 350 days. The membrane potential of post-natal day 2 (PD2) to PD350 was about -65 mV and did not change greatly with age, although it was slightly higher at PD2. However, there were significant changes in membrane resistance, which increased with age from about 15 to 30 MΩ. The depolarization induced by the excitatory amino acid agonists, kainic acid, NMDA and AMPA, decreased with aging in spite of the increase in membrane resistance. The motor neurons of the aged mice showed delayed recovery from excitation caused by excitatory amino acid agonists. By injecting Lucifer yellow CH into motor neurons, it was observed that the dendrite trees become thin, and some of the dendrite branches were missing in older animals.
新生和老年小鼠颈运动神经元切片的生理药理研究
在出生后第2天至350天的ICR小鼠的脊髓移植物切片中,观察了年龄对颈椎运动神经元生理特性的影响。出生后第2天(PD2)至PD350的膜电位约为-65 mV,随年龄变化不大,但PD2时膜电位略高。然而,膜阻力有显著的变化,随着年龄的增长,从15岁到30岁MΩ。兴奋性氨基酸激动剂kainic酸、NMDA和AMPA诱导的去极化随年龄增长而降低,但膜阻力增加。兴奋性氨基酸激动剂引起的老龄小鼠运动神经元的兴奋恢复延迟。通过向运动神经元注射路西法黄CH,观察到老年动物的树突树变细,部分树突树枝缺失。
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