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Chromosomal mapping and quantitative analysis of estrogen-related receptor alpha-1, estrogen receptors alpha and beta and progesterone receptor in the bovine mammary gland

机译:牛乳腺中雌激素相关受体α-1,雌激素受体α和β及孕激素受体的染色体定位和定量分析

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摘要

Although cell number is positively correlated with milk production, much remains to be learned about the bovine mammary stem cell and progenitor cells. Bovine mammary development is driven by many of the same classic mammogenic hormones studied in murine models, yet histologic features of bovine mammary development differ from that of rodent models. Most notably, terminal end buds, as they have been described for murine models, do not exist in the bovine mammary gland. However, among the most important common features of mammary development in disparate species is the involvement of histologically distinct, lightly staining epithelial cells as putative stem and progenitor cells. Although stem cell research has often focused on mammary development, mammary stem cells seemingly provide the basis for mammary growth and cell turnover in the mature animal. These cells provide an obvious focus for research aimed at increasing the efficiency of milk production. This review addresses recent findings concerning the histology and molecular physiology of putative bovine mammary stem and progenitor cell populations, areas where more study is critically needed, and areas where studies of bovine mammary physiology may present a unique opportunity to better understand mammary physiology in many species.
机译:尽管细胞数量与产奶量呈正相关,但有关牛乳干细胞和祖细胞的知识仍有很多。牛乳腺发育受鼠模型中研究的许多相同的经典致乳激素驱动,但牛乳腺发育的组织学特征与啮齿动物模型不同。最值得注意的是,如在鼠类模型中描述的那样,末端芽在牛乳腺中不存在。然而,在不同物种的乳腺发育中最重要的共同特征之一是,组织学上不同的,轻度染色的上皮细胞作为推定的干细胞和祖细胞参与其中。尽管干细胞研究通常集中在乳腺发育上,但乳干细胞似乎为成熟动物的乳腺生长和细胞更新提供了基础。这些细胞显然是旨在提高牛奶生产效率的研究重点。这篇综述阐述了有关推测的牛乳腺干细胞和祖细胞群体的组织学和分子生理学的最新发现,迫切需要进行更多研究的领域以及牛乳腺生理学研究可能提供了一个独特的机会来更好地了解许多物种的乳腺生理学的领域。

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