Schoenen J
Neuropathol Appl Neurobiol. 1978 Jan-Feb;4(1):37-46. doi: 10.1111/j.1365-2990.1978.tb00527.x.
Using histochemical methods the activity of acetycholinesterase, acid phosphatase and various dehydrogenases was investigated in the developing rat spinal cord. At the ninth embryonic day (E9) only the activity of the lactate dehydrogenase slow-moving isoenzymes was prominent in spinal neurons. Between E13 and E15 an increase was observed in the activity of most of the dehydrogenases and of acid phosphatase in motoneurons and posterior root ganglion cells. Between E15 and E17 acetylcholinesterase activity increased markedly. On E17 and E20, this enzyme was also detectable in anterior and posterior roots and in neurons of the intermediate grey matter. On E20, although all grey matter neurons were cytologically fully differentiated, their enzymatic content was found to be still incomplete. The prominent acid phosphatase reaction within laminae I and II, which is characteristic of the adult rat, was absent in the fetal spinal cord. These findings indicate that the spinal cord metabolism is predominantly anaerobic during the first two-thirds of gestation. The histoenzymological maturation of grey-matter neurons is delayed in comparison to their cytological differentiation. Furthermore, the ontogenesis of motoneuronal acetylcholinesterase activity correlates well with the development of motor activities in the rat fetus.
运用组织化学方法,对发育中的大鼠脊髓中乙酰胆碱酯酶、酸性磷酸酶及多种脱氢酶的活性进行了研究。在胚胎第9天(E9),脊髓神经元中仅乳酸脱氢酶慢迁移同工酶的活性较为显著。在E13至E15期间,运动神经元和后根神经节细胞中大多数脱氢酶和酸性磷酸酶的活性均有所增加。在E15至E17期间,乙酰胆碱酯酶活性显著增强。在E17和E20时,该酶在前根和后根以及中间灰质神经元中也可检测到。在E20时,尽管所有灰质神经元在细胞学上已完全分化,但其酶含量仍不完全。成年大鼠所特有的I层和II层内显著的酸性磷酸酶反应在胎儿脊髓中并不存在。这些发现表明,在妊娠的前三分之二时间里,脊髓代谢主要为无氧代谢。与它们的细胞学分化相比,灰质神经元的组织酶学成熟有所延迟。此外,运动神经元乙酰胆碱酯酶活性的个体发生与大鼠胎儿运动活动的发育密切相关。