首页> 外文OA文献 >Development of markers for cholinergic neurones in re-aggregate cultures of foetal rat whole brain in serum-containing and serum-free media: effects of triiodothyronine (T3).
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Development of markers for cholinergic neurones in re-aggregate cultures of foetal rat whole brain in serum-containing and serum-free media: effects of triiodothyronine (T3).

机译:在含血清和无血清培养基中胎鼠全脑再聚集培养物中胆碱能神经元标记物的开发:三碘甲状腺素(T3)的作用。

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摘要

Development has been studied in re-aggregate cultures derived from the 16 day foetal rat brain and the effects of triiodothyronine (T3) investigated. Cultures were maintained in either a medium containing 10% serum (S+), or in serum-free culture medium (S-) or in serum-free medium containing 30nM T3. The muscarinic cholinoceptor, measured by specific binding of [3H]-quinuclidinyl benzitate ([3H]-QNB) at 9 and 14 days in vitro, was at a lower level in the serum-free cultured cells compared with those in serum-containing culture medium (S+). In cultures in the latter medium, receptor concentration at day 14 was of a similar magnitude to that in rat brain at an equivalent postnatal age. Binding increased with development from 9 to 14 days in vitro in the S+ medium but not in the S- medium. T3 treatment caused an 85% increase in [3H]-QNB binding compared with the cultures in S- medium at day 14 to a level equivalent to that found in the cells grown in S+ medium. This increase was reflected in the Bmax but not in the KD (approx. 0.1nM). Choline acetyltransferase (ChAT) activity developed more slowly in the S- medium than in the S+ medium where the specific activity approximated values obtained in vivo. T3 treatment of cultures grow in S- medium significantly enhanced the developmental rate of increase of ChAT activity. The characteristics of [3H]-choline uptake and metabolism in the cultures was examined. Uptake was strictly Na+-independent but was energy-dependent, and inhibited by 2, 4'-dinitrophenol (2, 4'-DNP) and cooling (0-4 degrees C). Neither iodoacetate nor ouabain had any effect on the amount of uptake. Hemicholinium (HC3) was a potent inhibitor of uptake (70% inhibition at 10 microM HC3). Metabolism studies showed virtually no conversion to [3H]-acetylcholine ([3H]-ACH) in reaggregates grown in either the S+, S- or T3 containing media. However, a small amount of [3H]-choline was incorporated into phosphorylcholine. T3 treatment had no effect on this metabolic profile. The kinetics of [3H]-choline uptake by the re-aggregates was also studied in the re-aggregate cultures (after 12 and 22 days in vitro) using [3H]-choline at 0.05-100 microM. Both Eadie-Hofstee transformation and least-squares analysis of the data showed that the uptake comprised only a single low-affinity component with an apparent Kt = approx. 50 microM. Unlike ChAT and [3H]-QNB binding, there appeared to be no difference between the uptake in the different culture conditions.(ABSTRACT TRUNCATED AT 400 WORDS)
机译:已经研究了从16天胎鼠脑中重新聚集培养的发育,并研究了三碘甲状腺素(T3)的作用。将培养物维持在含有10%血清(S +)的培养基中或无血清培养基(S-)或含有30nM T3的无血清培养基中。通过在体外第9天和第14天通过[3H]-奎宁环烷基苯甲酸酯([3H] -QNB)的特异性结合测量,毒蕈碱胆碱受体在无血清培养细胞中的含量低于在含血清培养物中的浓度中(S +)。在后一种培养基中的培养中,第14天的受体浓度与出生后同等年龄的大鼠脑中的浓度相似。在体外,在S +培养基中的结合随着发育从9天增加到14天,而在S-培养基中则没有。与第14天在S-培养基中的培养相比,T3处理导致[3H] -QNB结合增加了85%,达到与在S +培养基中生长的细胞中发现的水平相当的水平。这种增加反映在Bmax中,但未反映在KD中(约0.1nM)。胆碱乙酰基转移酶(ChAT)的活性在S-培养基中的发展要比在S +培养基中要慢,后者的比活性接近体内获得的值。 T3处理培养在S-培养基中的培养物显着提高了ChAT活性增加的发展速度。检查了[3H]-胆碱在培养物中的摄取和代谢特征。摄取严格地不依赖于Na +,但是依赖于能量,并且被2、4'-二硝基苯酚(2、4'-DNP)和冷却(0-4℃)抑制。碘乙酸盐和哇巴因都对摄取量没有任何影响。 hol(HC3)是一种有效的吸收抑制剂(在10 microM HC3时抑制70%)。代谢研究表明,在含S +,S-或T3的培养基中生长的聚集物中,几乎没有转化为[3H]-乙酰胆碱([3H] -ACH)。然而,少量的[3H]-胆碱被掺入磷酸胆碱中。 T3处理对此代谢状况没有影响。还使用0.05-100 microM的[3H]-胆碱在重新聚集的培养物中(在体外12和22天后)研究了重新聚集体摄取[3H]-胆碱的动力学。 Eadie-Hofstee变换和数据的最小二乘分析均显示,吸收仅包含一个低亲和力组分,其表观Kt =约。 50 microM。与ChAT和[3H] -QNB结合不同,在不同培养条件下的摄取似乎没有差异。(摘要截短为400字)

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