Balázs R, Gallo V, Kingsbury A
Medical Research Council, Developmental Neurobiology Unit, London, U.K.
Brain Res. 1988 May 16;468(2):269-76. doi: 10.1016/0165-3806(88)90139-3.
The effect of depolarization on the maturation of granule cells derived from cerebella of 8-day-old rats can be studied in cultures in chemically defined media because their survival is not dependent on elevated K+ as it is when they are grown in serum-containing media. As an index of maturation, stimulus-coupled transmitter release was examined. This was chosen because it is closely associated with the neuronal phenotype and, in contrast to granule cells grown under depolarizing conditions in serum-containing media, it has not been known whether this property is expressed during the development of serum-free cells in culture. Veratrine-induced release of preloaded D-[3H]aspartate (Asp), an analogue of glutamate (Glu; the transmitter of the granule cells), was not detectable in the serum-free cells at a time (8-12 days in vitro) when this property was fully developed in cells grown in a medium containing serum and 25 mM K+ (reference cultures). This finding may be related to the failure of the expression of voltage-sensitive calcium channels in the serum-free granule cells. However, in comparison with reference cultures, voltage-sensitive 45Ca2+ entry was only transiently retarded in the serum-free cells. Furthermore, in contrast to the exogenous D-[3H]Asp, stimulated release of endogenous Glu was detectable, although it was substantially lower than in the reference cultures. Autoradiographic studies indicated that the failure to elicit evoked release of the exogenous amino acid was due to a severe retardation of the expression of the acidic amino acid carrier in the serum-free granule cells.(ABSTRACT TRUNCATED AT 250 WORDS)
去极化对8日龄大鼠小脑来源的颗粒细胞成熟的影响,可以在化学成分明确的培养基中进行培养研究,因为它们的存活不依赖于升高的钾离子,而在含血清培养基中生长时则依赖于此。作为成熟的指标,检测了刺激偶联的递质释放。选择这个指标是因为它与神经元表型密切相关,而且与在含血清培养基中在去极化条件下生长的颗粒细胞不同,目前尚不清楚在无血清培养细胞的发育过程中是否会表达这种特性。在无血清细胞中,当在含血清和25 mM钾离子的培养基中生长的细胞(对照培养物)中这种特性完全发育时(体外8 - 12天),未检测到藜芦碱诱导的预加载的D-[3H]天冬氨酸(Asp,谷氨酸(Glu;颗粒细胞的递质)的类似物)的释放。这一发现可能与无血清颗粒细胞中电压敏感钙通道表达的失败有关。然而,与对照培养物相比,无血清细胞中电压敏感的45Ca2+内流仅暂时延迟。此外,与外源性D-[3H]Asp不同,虽然内源性Glu的刺激释放明显低于对照培养物,但仍可检测到。放射自显影研究表明,未能引发外源性氨基酸的诱发释放是由于无血清颗粒细胞中酸性氨基酸载体表达的严重延迟。(摘要截断于250字)