Skaper S D, Selak I, Varon S
Brain Res. 1982 Mar;255(3):419-28. doi: 10.1016/0165-3806(82)90008-6.
We have recently shown that intact and dissociated 8-day embryonic (E8) chick dorsal root ganglia (DRG) lose the ability to regulate their intracellular Na+, K+ levels when deprived of nerve growth factor (NGF) for 6 h; recovery occurs within minutes of NGF presentation. These ganglionic neurons are believed to depend on NGF for survival and neurite production over a defined period of embryonic life--between about E6 and E15 in the chick. Using intact DRG from E6-E16 chick embryos we determined developmental changes in: (i) 22Na+ accumulation in the presence and absence of NGF, or in the presence of ouabain; and (ii) intra- and extracellular fluid spaces. Sodium accumulation, in the presence of NGF, increases from E6 to E10. It parallels the total fluid space under ouabain but then decreases conspicuously between E10 and E16, despite little change in the latter. NGF thus prevents Na+ accumulation during the early period, and becomes increasingly irrelevant for this behavior in later (after E10) development. These data are interpreted as indicating that: (i) NGF is required for ionic control by DRG neurons up to E10; and (ii) indigenous behaviors for the control of ion pump mechanism(s) are progressively acquired by these cells from E10 to E16, in parallel with the decreasing ionic relevance of NGF. These findings are consistent with the view that the ionic responses to NGF correlate closely with the survival and neurite-promoting effects of this factor.
我们最近发现,完整的和分离的8日龄胚胎(E8)鸡背根神经节(DRG)在缺乏神经生长因子(NGF)6小时后会失去调节细胞内钠、钾水平的能力;在给予NGF后几分钟内即可恢复。据信,这些神经节神经元在胚胎发育的特定时期(鸡大约在E6至E15之间)依赖NGF来维持存活和产生神经突。我们使用E6 - E16鸡胚胎的完整DRG,确定了以下方面的发育变化:(i)在有和没有NGF存在的情况下,或在有哇巴因存在的情况下22Na+的积累;以及(ii)细胞内和细胞外液间隙。在有NGF存在的情况下,钠的积累从E6增加到E10。它与哇巴因作用下的总液间隙平行,但在E10至E16之间显著下降,尽管后者变化不大。因此,NGF在早期可防止钠的积累,而在后期(E10之后)发育中,它对这种行为的相关性越来越小。这些数据被解释为表明:(i)直到E10,DRG神经元的离子控制需要NGF;(ii)从E10到E16,这些细胞逐渐获得控制离子泵机制的固有行为,同时NGF的离子相关性逐渐降低。这些发现与以下观点一致,即对NGF的离子反应与该因子的存活和促进神经突生长的作用密切相关。