Genomics Research Center, Academia Sinica, Taipei 115, Taiwan.
Biomaterials. 2010 Nov;31(32):8271-80. doi: 10.1016/j.biomaterials.2010.07.038. Epub 2010 Aug 1.
We have recently identified a rare subpopulation of lung colony cells with the characteristics of pulmonary stem cells, and discovered that stem cell colonies grew preferentially on type I collagen films in a serum-free medium. In order to further optimize culture conditions and determine stem cell growth in relation to microenvironments (including the stroma, medium and nanostructures of type I collagen films), both primary and pre-sorted stem cells were cultured on the type I collagen films with controllable degree of polymerization and film thickness, as confirmed by an atomic force microscope and surface profiler. We found that in a primary culture, the spreading of stromal cells is greatly restrained and both the size and number of colonies are significantly reduced on highly polymerized collagen films. In contrast, in a pre-sorted stem cell culture without stromal cells, the intrinsic stem cell properties and cell number are independent of the degree of collagen polymerization. Our results indicate that the nanostructures of type I collagen films primarily affect stem colony formation through the collagen-stroma interactions. In those cases, collagen film thickness shows no effect on colony formation.
我们最近发现了具有肺干细胞特征的肺集落细胞的一个稀有亚群,并发现干细胞集落在无血清培养基中的 I 型胶原膜上优先生长。为了进一步优化培养条件,并确定干细胞生长与微环境(包括基质、培养基和 I 型胶原膜的纳米结构)之间的关系,我们使用原子力显微镜和表面轮廓仪对具有可控聚合度和薄膜厚度的 I 型胶原膜进行了原代和预分选干细胞的培养。我们发现,在原代培养中,基质细胞的铺展受到极大抑制,高度聚合的胶原膜上集落的大小和数量均显著减少。相比之下,在没有基质细胞的预分选干细胞培养中,固有干细胞特性和细胞数量与胶原聚合度无关。我们的结果表明,I 型胶原膜的纳米结构主要通过胶原-基质相互作用影响干细胞集落的形成。在这种情况下,胶原膜厚度对集落形成没有影响。