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二维和三维模型中两种牛乳腺上皮细胞系的表型和功能特征

Phenotypic and functional characterization of two bovine mammary epithelial cell lines in 2D and 3D models.

作者信息

Arévalo Turrubiarte Magdalena, Perruchot Marie-Hélène, Finot Laurence, Mayeur Frédérique, Dessauge Frédéric

机构信息

Institut National de la Recherche Agronomique, UMR1348 Pegase, Saint-Gilles, France; and Agrocampus Ouest, UMR1348 Pegase, Rennes, France.

Institut National de la Recherche Agronomique, UMR1348 Pegase, Saint-Gilles, France; and Agrocampus Ouest, UMR1348 Pegase, Rennes, France

出版信息

Am J Physiol Cell Physiol. 2016 Mar 1;310(5):C348-56. doi: 10.1152/ajpcell.00261.2015. Epub 2015 Dec 9.

Abstract

Immortalized bovine mammary epithelial cells (BME-UV1) and immortalized bovine mammary alveolar cells (MAC-T) have been extensively used as in vitro cell models to understand milk production in dairy cows. Precise knowledge about their phenotype and performance remains, however, unknown. This study aims to characterize MAC-T and BME-UV1 profiles when cultured in two-dimensional adherent, three-dimensional adherent (Matrigel), and three-dimensional no adherent [ultralow attachment (ULA)] supports. MAC-T and BME-UV1 were compared according to their proliferation capacities and to specific cell surface markers CD24, CD326 [epithelial cell adhesion molecule (EpCAM)], CD10, and integrin CD49f (α-6). Cytokeratin (CK14 and CK19), signal transducer and activator of transcription 5, and other proteins (occludin and cadherin-1) were analyzed. BME-UV1 in ULA support expressed higher CD49f marker. A different intensity of CD49 staining allowed the discrimination between the two cell lines in adherent condition. CD10, EpCAM, and CK19 expressions show that BME-UV1 cells have luminal capacity, while MAC-T has a myoepithelial profile with a high expression of CK14. BME-UV1 cells possess a closer committed progenitor profile due to their higher expression in aldehyde dehydrogenase and EpCAM. We observed that BME-UV1 cells have a better capacity to form spherical structures, mammospheres, in Matrigel than MAC-T, which was confirmed by the higher mammosphere area. In the ULA condition, BME-UV1 proliferated over the 6 days of culture. Taken together, our results clearly confirm the BME-UV1 luminal profile and MAC-T ductal/myoepithelial-like phenotype.

摘要

永生化牛乳腺上皮细胞(BME-UV1)和永生化牛乳腺腺泡细胞(MAC-T)已被广泛用作体外细胞模型,以了解奶牛的产奶情况。然而,关于它们的表型和性能的精确知识仍然未知。本研究旨在表征MAC-T和BME-UV1在二维贴壁、三维贴壁(基质胶)和三维非贴壁[超低附着(ULA)]支持物中培养时的特征。根据MAC-T和BME-UV1的增殖能力以及特定细胞表面标志物CD24、CD326 [上皮细胞粘附分子(EpCAM)]、CD10和整合素CD49f(α-6)进行比较。分析了细胞角蛋白(CK14和CK19)、信号转导和转录激活因子5以及其他蛋白质(闭合蛋白和钙粘蛋白-1)。ULA支持物中的BME-UV1表达较高的CD49f标志物。不同强度的CD49染色可区分贴壁条件下的两种细胞系。CD10、EpCAM和CK19的表达表明,BME-UV1细胞具有管腔能力,而MAC-T具有肌上皮特征,CK14表达较高。由于BME-UV1细胞在醛脱氢酶和EpCAM中的表达较高,因此具有更接近定向祖细胞的特征。我们观察到,BME-UV1细胞在基质胶中形成球形结构即乳腺球的能力比MAC-T更好,这一点通过更大的乳腺球面积得到了证实。在ULA条件下,BME-UV1在培养的6天内增殖。综上所述,我们的结果清楚地证实了BME-UV1的管腔特征和MAC-T的导管/肌上皮样表型。

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