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单层培养中大鼠垂体促甲状腺细胞的富集群体。

Enriched populations of rat pituitary thyrotrophs in monolayer culture.

作者信息

Leuschen M P, Tobin R B, Moriarty C M

出版信息

Endocrinology. 1978 Feb;102(2):509-18. doi: 10.1210/endo-102-2-509.

Abstract

Rat anterior pituitary cells were dissociated and subjected to 4 h of unit gravity sedimentation. Eighty-five 8-ml fractions were collected, and nine pooled fractions were placed in monolayer culture for 1 week. The attached cells were immunocytochemically stained for TSH using an antiserum previously shown to be specific for the beta subunit of TSH and all culture media saved for subsequent assay of TSH. Thyrotrophs were localized both immunocytochemically and by radioimmunoassay to 1-2 fractions from the top of the sedimentation chamber. Typically, it was found that 60-80% of the cells in these fractions were immunocytochemically identified as thyrotrophs. Electron microscopic observations indicated that such cells displayed the classical morphological features associated with thyrotrophs. The enriched thyrotroph cultures responded to 1.0 mM dibutyryl cyclic AMP with an increased release of TSH indicating that the intracellular secretory machinery was not altered by the procedures employed. In all cases, the basal TSH secretion decreased with time in culture. In addition, the fractions containing the most TSH in the culture media were usually one fraction lighter (lower sedimentation rate) than the fractions which were found immunocytochemically to contain the highest percentage of thyrotrophs. The results suggest the possibility of two functionally distinct thyrotroph cell types as has been suggested for the pituitary somatotrophs.

摘要

将大鼠垂体前叶细胞解离,并进行4小时的单位重力沉降。收集85个8毫升的组分,将9个合并的组分进行单层培养1周。使用先前已证明对促甲状腺激素β亚基具有特异性的抗血清,对贴壁细胞进行促甲状腺激素的免疫细胞化学染色,并保存所有培养基用于后续促甲状腺激素的测定。通过免疫细胞化学和放射免疫测定法将促甲状腺细胞定位在沉降室顶部的1 - 2个组分中。通常,发现这些组分中60 - 80%的细胞通过免疫细胞化学鉴定为促甲状腺细胞。电子显微镜观察表明,这些细胞呈现出与促甲状腺细胞相关的典型形态特征。富集的促甲状腺细胞培养物对1.0 mM二丁酰环磷酸腺苷有反应,促甲状腺激素释放增加,表明所采用的程序未改变细胞内的分泌机制。在所有情况下,基础促甲状腺激素分泌随培养时间而降低。此外,培养基中促甲状腺激素含量最高的组分通常比通过免疫细胞化学发现促甲状腺细胞百分比最高的组分轻一个组分(沉降速率更低)。结果表明,正如垂体生长激素细胞所提示的那样,可能存在两种功能不同的促甲状腺细胞类型。

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