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细胞外基质与小鼠乳腺细胞功能:培养中不同基质的比较

Extracellular matrix and mouse mammary cell function: comparison of substrata in culture.

作者信息

Hurley W L, Blatchford D R, Hendry K A, Wilde C J

机构信息

Hannah Research Institute, Ayr, United Kingdom.

出版信息

In Vitro Cell Dev Biol Anim. 1994 Aug;30A(8):529-38.

PMID:7987541
Abstract

Cultured mammary cells depend on interaction with a substratum for functional differentiation, even in the presence of lactogenic hormones. Protein synthesis and secretion by mouse mammary epithelial cells on floating collagen gels and (EHS) matrix were compared. Cells were prepared by collagenase digestion of tissue from mid-pregnant mice. Protein synthesis was consistently greater in cells attached to EHS matrix, and was associated with proportionately higher rates of protein secretion into culture medium. Cells on EHS secreted protein into a luminal space formed within multicellular alveolus-like structures. Luminal secreted protein, extracted by EGTA treatment of cells in situ, constituted up to 40% of total secreted radiolabeled protein for cells on EHS matrix. The EGTA extract contained a higher proportion of casein and lactoferrin, whereas transferrin was predominantly in the medium. This indicated that cells on EHS matrix had become polarized and were secreting proteins vectorially. In contrast, EGTA treatment of cells on floating collagen gels released virtually no radiolabeled protein, showing that mammosphere formation was a property of cells on EHS. These biochemical observations were supported by ultrastructural evidence. In EHS cultures, the proportion of secreted protein in the luminal fraction, but not the distribution of secreted proteins, changed with time. This suggests that there may be leakage out of the lumen, or intraluminal degradation of protein after secretion. Nevertheless, the results suggest that cellular organization into mammospheres on EHS matrix promotes synthetic and secretory activity. This system provides a useful model for investigation of the regulation of milk secretion.

摘要

培养的乳腺细胞即使在存在催乳激素的情况下,其功能分化也依赖于与基质的相互作用。比较了小鼠乳腺上皮细胞在漂浮胶原凝胶和(EHS)基质上的蛋白质合成与分泌情况。通过胶原酶消化妊娠中期小鼠的组织来制备细胞。附着在EHS基质上的细胞中蛋白质合成始终更高,并且与向培养基中分泌蛋白质的比例更高相关。EHS上的细胞将蛋白质分泌到多细胞肺泡样结构内形成的腔隙中。通过原位用EGTA处理细胞提取的腔内分泌蛋白,占EHS基质上细胞分泌的放射性标记蛋白总量的40%。EGTA提取物中酪蛋白和乳铁蛋白的比例更高,而转铁蛋白主要存在于培养基中。这表明EHS基质上的细胞已发生极化并正在进行蛋白质的定向分泌。相比之下,用EGTA处理漂浮胶原凝胶上的细胞几乎没有释放出放射性标记蛋白,表明乳腺球的形成是EHS上细胞的特性。这些生化观察结果得到了超微结构证据的支持。在EHS培养物中,腔内部分分泌蛋白的比例随时间变化,但分泌蛋白的分布没有变化。这表明可能存在从腔隙中泄漏或分泌后腔内蛋白质降解的情况。尽管如此,结果表明在EHS基质上形成乳腺球的细胞组织促进了合成和分泌活性。该系统为研究乳汁分泌的调节提供了一个有用的模型。

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