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Bioengineering a complex 3D human breast tissue culture system on silk scaffolds

机译:在丝绸支架上生物工程化复杂的3D人乳房组织培养系统

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Epithelial-stromal interactions play a crucial role in normal embryonic development and carcinogenesis of the human breast while the underlying mechanisms of these events remain poorly understood. Here, we constructed a physiologically relevant, 3D culture surrogate of complex human breast tissue that included a tri-culture system made up of human mammary epithelial cells (MCF10A), fibroblasts and adipocytes in a Matrigel¿/collagen mixture on porous silk scaffolds. The presence of stromal cells inhibited MCF10A proliferation and induced both alveolar and ductal morphogenesis and enhanced casein expression. Only alveolar structures with reverted polarity were observed in MCF10A monocultures. In contrast to the immature polarity exhibited by co-cultures with either fibroblasts or adipocytes, the alveolar structures formed by the tri-cultures exhibited proper polarity similar to that observed in breast tissue. Furthermore, consistent with their phenotypic appearance, more functional differentiation of epithelial cells was also observed in the tri-cultures, where casein a and ß-mRNA expression was significantly increased. This in vitro tri-culture system sustained on silk scaffold effectively represents a more physiologically relevant 3D microenvironment for mammary epithelial cells and stromal cells than either co-cultures or monocultures. This experimental model provides an important first step for bioengineering an informative human breast tissue system.
机译:上皮-基质相互作用在人的正常胚胎发育和癌变过程中起着至关重要的作用,而对这些事件的潜在机制仍知之甚少。在这里,我们构建了复杂的人类乳房组织的生理相关的3D文化替代品,其中包括由人乳腺上皮细胞(MCF10A),成纤维细胞和脂肪细胞在基质胶/胶原蛋白混合物中组成的三培养系统在多孔丝支架上。基质细胞的存在抑制了MCF10A的增殖,并诱导了肺泡和导管的形态发生,并增强了酪蛋白的表达。在MCF10A单培养中仅观察到极性反转的肺泡结构。与成纤维细胞或脂肪细胞共培养显示的未成熟极性相反,由三培养形成的肺泡结构显示出与在乳房组织中观察到的相似的正确极性。此外,与其表型的外观一致,上皮细胞在三文化中也观察到更多的功能分化,其中酪蛋白a和ƒƒÂβ-mRNA表达显着增加。与共培养或单培养相比,这种在丝支架上维持的体外三培养系统有效地代表了乳腺上皮细胞和基质细胞在生理上更相关的3D微环境。该实验模型为生物工程信息性人体乳腺组织系统提供了重要的第一步。

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