The University of Arizona, College of Nursing, Tucson, AZ 85721-0203, USA.
Pulm Pharmacol Ther. 2011 Oct;24(5):577-86. doi: 10.1016/j.pupt.2011.05.005. Epub 2011 May 23.
There is a lack of cell culture models using primary alveolar type I (AT I) cells. The purpose of this study was to develop cell culture models using rat AT I cells and microvascular endothelial cells from the lung (MVECL). Two types of model systems were developed: single and co-culture systems; additionally a 3-dimensional model system was developed. Pure AT I cell (96.3 ± 2.7%) and MVECL (97.9 ± 1.1%) preparations were used. AT I cell morphology, mitochondrial number and distribution, actin filament arrangement and number of apoptotic cells at confluence, and telomere attrition were characterized. AT I cells maintained their morphometric characteristics through at least population doubling (PD) 35, while demonstrating telomere attrition through at least PD 100. Furthermore, AT I cells maintained the expression of their specific markers, T1α and AQ-5, through PD 42. For the co-cultures, AT I cells were grown on the top and MVECL were grown on the bottom of fibronectin-coated 24-well Transwell Fluroblok™ filter inserts. Neither cell type transmigrated the 1 μm pores. Additionally, AT I cells were grown in a thick layer of Matrigel(®) to create a 3-dimensional model in which primary AT I cells form ring-like structures that resemble an alveolus. The development of these model systems offers the opportunities to investigate AT I cells and their interactions with MVECL in response to pharmacological interventions and in the processes of disease, repair and regeneration.
目前缺乏使用原代肺泡 I 型(AT I)细胞的细胞培养模型。本研究旨在开发使用大鼠 AT I 细胞和肺微血管内皮细胞(MVECL)的细胞培养模型。开发了两种模型系统:单层和共培养系统;此外还开发了三维模型系统。使用了纯 AT I 细胞(96.3±2.7%)和 MVECL(97.9±1.1%)制剂。对 AT I 细胞形态、线粒体数量和分布、肌动蛋白丝排列和汇合时的细胞凋亡数量以及端粒磨损进行了特征描述。AT I 细胞在至少经历 35 次群体倍增(PD)时保持其形态特征,而在至少经历 100 次 PD 时表现出端粒磨损。此外,AT I 细胞在经历 42 次 PD 时仍保持其特异性标志物 T1α 和 AQ-5 的表达。对于共培养物,将 AT I 细胞种植在纤维连接蛋白包被的 24 孔 Transwell Fluroblok™过滤器插入物的顶部,而 MVECL 种植在底部。两种细胞类型都没有穿过 1μm 的孔。此外,将 AT I 细胞种植在一层厚厚的 Matrigel(®)中,以创建一个三维模型,其中原代 AT I 细胞形成类似于肺泡的环状结构。这些模型系统的开发为研究 AT I 细胞及其与 MVECL 的相互作用提供了机会,以响应药理学干预以及在疾病、修复和再生过程中。