[温度、衰老和激素条件(甲状腺素)对幼小蝌蚪和蟾蜍蜕变过程中细胞增殖的影响]。

Christian Dournon, Pierre Chibon
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引用次数: 11

摘要

测定了端脑、前肢芽间质和肠上皮三种组织的生成时间、细胞周期持续时间和生长分数。在不同温度(12、16和24℃)下饲养幼虫,结果表明:温度越高,细胞周期(T)和S、G2、M期持续时间越短;G1期特征性地延长或缩短,取决于特定阶段的相关组织,生长分数(CP)是每个组织的特征,不随温度变化,对温度条件的敏感性也是每个组织的特征;前肢芽间质最不敏感。幼虫期细胞群的老化分化和自然变态(恒温16℃)延长了代时间(T)和S、M、G1期的持续时间;同时,生长分数减小。但在变质高潮时,由于T缩短和CP增加,部分组织(端脑、次级肠上皮)的生长速度突然暂时加快,而另一些组织(原代肠上皮)则不再增殖,出现塌陷。这些对不同器官的不同修饰似乎与循环血液中甲状腺素含量的变化有关。它们可以被认为是不同组织对甲状腺素敏感性的一个方面。
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[Effect of temperature, ageing and hormonal conditions (thyroxine) on cell proliferation, in the young tadpole and during metamorphosis of the toadBufo bufo L. (Amphibia, Anura)].

Generation time, duration of cell cycle phases and growth fraction were measured for three tissues: telencephalon, anterior limb-bud mesenchyme and intestinal epithelium.By rearing young larvae at different temperatures (12, 16 and 24° C), it was demonstrated that: cell cycle duration (T) and the duration of S, G2 and M phases are shorter at higher temperature; the G1 phase is characteristically lengthened or shortened, depending on the tissue concerned at a given stage, the growth fraction (CP) is characteristic for each tissue, and does not vary with temperature the sensitivity to temperature conditions is also characteristic for each tissue; anterior limb bud mesenchyme is the least sensitive. Ageing and differentiation of cell populations during larval life and natural metamorphosis (at the constant temperature of 16° C) lengthen the generation time (T) and the duration of S, M and G1 phases; simultaneously the growth fraction decreases. But at the metamorphic climax, the growth rate of some tissues (telencephalon, secondary intestinal epithelium) is suddenly and temporarily increased, as a result of both a shortening of T and an increase of CP. On the contrary, other tissues (primary intestinal epithelium) no longer proliferate, and collapse. These different modifications to the different organs seem to be related to variations in the amount of thyroxine in the circulating blood. They can be considered as one of the aspects of the differential tissue sensitivity to thyroxine.

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