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激素对体外培养的乳鼠腮腺分化的影响。

Effects of hormones on differentiation of parotid glands of suckling mice in vitro.

作者信息

Kumegawa M, Takuma T, Hosoda S, Nakanishi M

出版信息

Biochim Biophys Acta. 1978 Nov 15;544(1):53-61. doi: 10.1016/0304-4165(78)90208-8.

Abstract

The hormonal requirements for functional differentiation of mouse parotid glands were investigated using organ cultures in chemically defined medium. The hormones tested were insulin, thyroxine and prednisolone, and the parameters examined were alpha-amylase activity and the ultrastructure of the tissue. It is found that most of the amylase in the cultures (80%) was released into the culture medium after 5 days of cultivation. Prednisolone (5 . 10(-3) mg/ml) alone resulted in a 3--4-fold increase in specific activity of amylase (total amylase activity in the medium and culture) over that in its absence, but neither insulin nor thyroxine alone induced the enzyme. Prednisolone plus thyroxine (over 1 . 10(-7) mg/ml) or insulin (over 1 . 10(-3) unit/ml) induced markedly the enzyme, amylase specific activity being as much as 4- or 6-fold that with prednisolone alone. Moreover the enzyme specific activity was dependent on the prednisolone concentration (5 . 10(-7) - 5 . 10(-3) mg/ml) in the presence of thyroxine (1 . 10(-2) mg/ml) or insulin (1 . 10(-2) unit/ml). Morphological differentiation was also observed in explants cultivated in medium containing prednisolone plus thyroxine or insulin. These results suggest that besides glucocorticoids, insulin and thyroxine are involved in increase in amylase activity in mouse parotid glands during the late suckling period.

摘要

利用化学成分明确的培养基中的器官培养法,研究了小鼠腮腺功能分化所需的激素。所测试的激素为胰岛素、甲状腺素和泼尼松龙,所检测的参数为α淀粉酶活性和组织的超微结构。结果发现,培养5天后,培养物中大部分淀粉酶(80%)释放到培养基中。单独使用泼尼松龙(5×10⁻³毫克/毫升)可使淀粉酶的比活性(培养基和培养物中的总淀粉酶活性)比未使用时增加3至4倍,但单独使用胰岛素或甲状腺素均不能诱导该酶产生。泼尼松龙加甲状腺素(超过1×10⁻⁷毫克/毫升)或胰岛素(超过1×10⁻³单位/毫升)可显著诱导该酶,淀粉酶比活性高达单独使用泼尼松龙时的4倍或6倍。此外,在甲状腺素(1×10⁻²毫克/毫升)或胰岛素(1×10⁻²单位/毫升)存在的情况下,酶的比活性取决于泼尼松龙的浓度(5×10⁻⁷至5×10⁻³毫克/毫升)。在含有泼尼松龙加甲状腺素或胰岛素的培养基中培养的外植体中也观察到了形态分化。这些结果表明,除糖皮质激素外,胰岛素和甲状腺素在哺乳后期小鼠腮腺淀粉酶活性增加中也起作用。

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