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体外髓鞘形成的研究:关于甲状腺激素对胚胎小鼠培养脑细胞中两种髓鞘相关标志物发育表达发挥最大调节作用的关键时期的研究。

Investigations on myelinogenesis in vitro: a study of the critical period at which thyroid hormone exerts its maximum regulatory effect on the developmental expression of two myelin associated markers in cultured brain cells from embryonic mice.

作者信息

Shanker G, Amur S G, Pieringer R A

出版信息

Neurochem Res. 1985 May;10(5):617-25. doi: 10.1007/BF00964401.

Abstract

Cultures of cells dissociated from embryonic mouse brain were used to assess the period in which thyroid hormone exerts its maximum influence on the regulation of the expression of two myelin associated metabolites, sulfolipids and 2',3'-cyclic nucleotide 3'-phosphohydrolase (CNP-ase). Cultures were grown for a specified number of days on a medium containing normal calf serum and then a portion were switched to a medium containing hypothyroid calf serum for 2 days. One half of these cultures were then supplemented with 50 nM triiodothyronine and growth was continued in all cultures for 3 more days. The cells were then assayed for CNP-ase activity and for their ability to incorporate 35SO4 into sulfolipids. Studies with both myelin markers showed that in the earlier culture ages of 5, 8, and 11 days, thyroid hormone was able to fully restore the activities when added to cultures grown on hypothyroid calf-serum. In contrast, in the intermediate age range (15, 19, and 22 days) the restoration was partial, while in the higher ages, there was practically negligible restoration with T3. Since the culture system eliminates the possibility of a blood brain barrier and drastically decreases the complicity of other hormones, the lack of a myelinogenic response to thyroid hormone after a certain age must be attributed to the loss of sensitivity of the oligodendroglia to T3 possibly through genetic programming.

摘要

从胚胎小鼠大脑分离的细胞培养物被用于评估甲状腺激素对两种髓鞘相关代谢物(硫脂和2',3'-环核苷酸3'-磷酸水解酶(CNP酶))表达调控发挥最大影响的时期。细胞培养物在含有正常小牛血清的培养基上培养特定天数,然后一部分切换到含有甲状腺功能减退小牛血清的培养基中培养2天。然后,这些培养物中的一半补充50 nM三碘甲状腺原氨酸,并在所有培养物中继续培养3天。然后测定细胞的CNP酶活性以及它们将35SO4掺入硫脂的能力。对这两种髓鞘标记物的研究表明,在5、8和11天的早期培养阶段,当将甲状腺激素添加到在甲状腺功能减退小牛血清上生长的培养物中时,能够完全恢复活性。相比之下,在中间年龄范围(15、19和22天),恢复是部分性的,而在较高年龄时,T3的恢复几乎可以忽略不计。由于培养系统消除了血脑屏障的可能性,并大大降低了其他激素的复杂性,一定年龄后对甲状腺激素缺乏成髓鞘反应必须归因于少突胶质细胞对T3敏感性的丧失,这可能是通过基因编程导致的。

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