Nash Claire E, Mavria Georgia, Baxter Euan W, Holliday Deborah L, Tomlinson Darren C, Treanor Darren, Novitskaya Vera, Berditchevski Fedor, Hanby Andrew M, Speirs Valerie
Leeds Institute of Cancer and Pathology, University of Leeds, Leeds, UK.
Current address: The Research Institute of the McGill University Health Centre, Montreal, Quebec, Canada.
Oncotarget. 2015 May 30;6(15):13731-41. doi: 10.18632/oncotarget.3803.
Multicellular 3-dimensional (3D) in vitro models of normal human breast tissue to study cancer initiation are required. We present a model incorporating three of the major functional cell types of breast, detail the phenotype and document our breast cancer initiation studies. Myoepithelial cells and fibroblasts were isolated and immortalised from breast reduction mammoplasty samples. Tri-cultures containing non-tumorigenic luminal epithelial cells HB2, or HB2 overexpressing different HER proteins, together with myoepithelial cells and fibroblasts were established in collagen I. Phenotype was assessed morphologically and immunohistochemically and compared to normal breast tissue. When all three cell types were present, polarised epithelial structures with lumens and basement membrane production were observed, akin to normal human breast tissue. Overexpression of HER2 or HER2/3 caused a significant increase in size, while HER2 overexpression resulted in development of a DCIS-like phenotype. In summary, we have developed a 3D tri-cellular model of normal human breast, amenable to comparative analysis after genetic manipulation and with potential to dissect the mechanisms behind the early stages of breast cancer initiation.
需要用于研究癌症起始的正常人类乳腺组织的多细胞三维(3D)体外模型。我们展示了一个包含乳腺三种主要功能细胞类型的模型,详细描述了其表型,并记录了我们的乳腺癌起始研究。从乳房缩小整形手术样本中分离并永生化了肌上皮细胞和成纤维细胞。在I型胶原蛋白中建立了包含非致瘤性腔上皮细胞HB2或过表达不同HER蛋白的HB2,以及肌上皮细胞和成纤维细胞的三细胞共培养体系。通过形态学和免疫组织化学评估表型,并与正常乳腺组织进行比较。当所有三种细胞类型都存在时,观察到具有管腔和基底膜形成的极化上皮结构,类似于正常人类乳腺组织。HER2或HER2/3的过表达导致大小显著增加,而HER2的过表达导致了一种DCIS样表型的发展。总之,我们开发了一种正常人类乳腺的3D三细胞模型,适合在基因操作后进行比较分析,并有潜力剖析乳腺癌起始早期阶段背后的机制。