Palmer Carol A, Neville Margaret C, Anderson Steven M, McManaman James L
Department of Physiology, University of Colorado Health Sciences Center at Fitzsimmons, Aurora, CO 80045, USA.
J Mammary Gland Biol Neoplasia. 2006 Oct;11(3-4):269-82. doi: 10.1007/s10911-006-9023-3.
Although lactation is the only physiological function of the mammary gland, little is known about the molecular events required for secretory activation and milk production. Genetically altered mice have been used extensively to study mammary gland development during puberty and pregnancy, as well as mammary tumorigenesis. A number of approaches have been used to produce genetic modifications in mammary glands of mice, including transgenic mice utilizing mammary specific promoters, traditional knockout mice, mammary-specific gene deletion, and conditionally-regulated transgenes. The same technologies can be used to study secretory activation and lactation; however only a comparatively small number of studies to date have used these approaches to study these events. In this paper we review the technologies available to make genetically modified mice for the study of secretory activation and lactation as well as specific analytical procedures that can be used to characterize mice with lactation defects.
尽管泌乳是乳腺唯一的生理功能,但对于分泌激活和乳汁生成所需的分子事件却知之甚少。基因工程改造的小鼠已被广泛用于研究青春期和妊娠期的乳腺发育以及乳腺肿瘤发生。人们已采用多种方法在小鼠乳腺中进行基因改造,包括利用乳腺特异性启动子的转基因小鼠、传统的基因敲除小鼠、乳腺特异性基因缺失以及条件性调控转基因。同样的技术可用于研究分泌激活和泌乳;然而,迄今为止只有相对较少的研究采用这些方法来研究这些事件。在本文中,我们综述了用于制备基因工程改造小鼠以研究分泌激活和泌乳的现有技术,以及可用于鉴定有泌乳缺陷小鼠的特定分析程序。