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胚胎乳腺间充质在表皮细胞中诱导的乳腺表型表达。

Mammary phenotypic expression induced in epidermal cells by embryonic mammary mesenchyme.

作者信息

Cunha G R, Young P, Christov K, Guzman R, Nandi S, Talamantes F, Thordarson G

机构信息

Department of Anatomy, University of California, School of Medicine, San Francisco 94143-0452, USA.

出版信息

Acta Anat (Basel). 1995;152(3):195-204. doi: 10.1159/000147698.

Abstract

The goal of this research was to establish methods for inducing mammary epithelial differentiation from nonmammary epithelium. For this purpose, mid-ventral or dorsal epidermis (skin epithelium; SKE) from 13-day rat or mouse embryos was associated with 13-day embryonic mouse mammary mesenchyme (mammary gland mesenchyme; MGM) (mouse MGM+rat or mouse SKE). The resultant MGM+SKE recombinants as well as controls (homotypic mouse mammary recombinants, homotypic mouse skin recombinants and mouse mammary mesenchyme by itself) were grafted under the renal capsule of syngeneic or athymic female nude mouse hosts. Most female hosts were induced to undergo lactogenesis by grafting an adult pituitary which elicited a state of hyperprolactinemia. Tissue recombinants of mouse MGM+rat or mouse SKE grown for 1 month in vivo formed a hair-bearing keratinized skin from which mammary ductal structures extended into the mesenchyme. The ducts were composed of columnar luminal epithelial cells as well as basal, actin-positive myoepithelial cells. When grown in pituitary-grafted hosts, the ductal epithelial cells expressed casein and alpha-lactalbumin as judged by immunocytochemistry. The expression of caseins in MGM+SKE recombinants was confirmed by Western blot. The epithelial cells in mouse MGM+rat SKE recombinants expressing milk proteins were shown to be rat cells while the surrounding connective tissue was composed of mouse cells based upon staining with Hoechst dye 33258. Using mammary-specific markers, these studies confirmed the earlier morphological studies of Propper and unequivocally demonstrated for the first time that embryonic mammary mesenchyme can induce morphological and functional mammary differentiation from nonmammary epithelium.

摘要

本研究的目的是建立从非乳腺上皮诱导乳腺上皮分化的方法。为此,将13日龄大鼠或小鼠胚胎的腹侧中部或背部表皮(皮肤上皮;SKE)与13日龄胚胎小鼠乳腺间充质(乳腺间充质;MGM)(小鼠MGM +大鼠或小鼠SKE)联合。将所得的MGM + SKE重组体以及对照(同型小鼠乳腺重组体、同型小鼠皮肤重组体和单独的小鼠乳腺间充质)移植到同基因或无胸腺雌性裸鼠宿主的肾包膜下。大多数雌性宿主通过移植成年垂体诱导泌乳,从而引发高催乳素血症状态。在体内生长1个月的小鼠MGM +大鼠或小鼠SKE组织重组体形成了有毛的角化皮肤,乳腺导管结构从中延伸到间充质中。导管由柱状腔上皮细胞以及基底的、肌动蛋白阳性的肌上皮细胞组成。通过免疫细胞化学判断,当在移植了垂体的宿主中生长时,导管上皮细胞表达酪蛋白和α-乳白蛋白。通过蛋白质免疫印迹法证实了MGM + SKE重组体中酪蛋白的表达。基于用Hoechst染料33258染色,表达乳蛋白的小鼠MGM +大鼠SKE重组体中的上皮细胞显示为大鼠细胞,而周围的结缔组织由小鼠细胞组成。使用乳腺特异性标志物,这些研究证实了Propper早期的形态学研究,并首次明确证明胚胎乳腺间充质可以诱导非乳腺上皮发生形态学和功能性乳腺分化。

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