Wang Xiuli, Zhang Xiaohui, Sun Lin, Subramanian Balajikarthick, Maffini Maricel V, Soto Ana, Sonnenschein Carlos, Kaplan David L
Department of Biomedical Engineering, Tufts University, Medford, Massachusetts 02155, USA.
Tissue Eng Part A. 2009 Oct;15(10):3087-98. doi: 10.1089/ten.TEA.2008.0670.
Epithelial-mesenchymal interactions play an important role in regulating normal tissue development as well as tumor development for the mammary gland, but much is yet to uncover to reach a full understanding of their complexity. To address this issue, the establishment of relevant, surrogate, three-dimensional (3D) human tissue culture models is essential. In the present study, a novel 3D coculture system was developed to study the interactions between human mammary epithelial cells (MCF10A) and adipocytes, a prominent stromal cell type in native breast tissue. The MCF10A cells were cultured within a mixture of Matrigel and collagen in 3D porous silk scaffolds with or without predifferentiated human adipose-derived stem cells (hASCs). The presence of hASCs inhibited MCF10A cell proliferation, induced both alveolar and ductal morphogenesis, and enhanced their functional differentiation as evidenced by histology and functional analysis. The alveolar structures formed by cocultures exhibited proper, immature polarity when compared with native breast tissue. In contrast, only alveolar structures with reverted polarity were observed in the MCF10A monocultures. The effect of ductal morphogenesis in cocultures may correlate to hepatocyte growth factor secreted by the predifferentiated hASCs, based on results from a cytokine blocking assay. Taken together, this in vitro coculture model on silk scaffolds effectively reconstitutes a physiologically relevant 3D microenvironment for epithelial cells and stromal cells and provides a useful system to study tissue organization and epithelial morphogenesis in normal or diseased breast development.
上皮-间质相互作用在调节正常组织发育以及乳腺肿瘤发展过程中发挥着重要作用,但要全面了解其复杂性,仍有许多有待揭示的地方。为解决这一问题,建立相关的、替代性的三维(3D)人体组织培养模型至关重要。在本研究中,开发了一种新型3D共培养系统,以研究人乳腺上皮细胞(MCF10A)与脂肪细胞(天然乳腺组织中一种重要的基质细胞类型)之间的相互作用。MCF10A细胞在Matrigel和胶原蛋白的混合物中,于有或没有预分化人脂肪来源干细胞(hASC)的3D多孔丝支架内培养。hASC的存在抑制了MCF10A细胞增殖,诱导了腺泡和导管形态发生,并增强了其功能分化,组织学和功能分析证明了这一点。与天然乳腺组织相比,共培养形成的腺泡结构表现出适当的、未成熟的极性。相反,在MCF10A单培养中仅观察到极性反转的腺泡结构。基于细胞因子阻断试验的结果,共培养中导管形态发生的作用可能与预分化hASC分泌的肝细胞生长因子有关。综上所述,这种基于丝支架的体外共培养模型有效地重建了上皮细胞和基质细胞生理相关的3D微环境,并为研究正常或患病乳腺发育中的组织组织和上皮形态发生提供了一个有用的系统。