State Key Laboratory of Reproductive Biology, Institute of Zoology, Chinese Academy of Sciences, Beijing, China.
PLoS One. 2011;6(11):e26603. doi: 10.1371/journal.pone.0026603. Epub 2011 Nov 9.
The skin is susceptible to different injuries and diseases. One major obstacle in skin tissue engineering is how to develop functional three-dimensional (3D) substitute for damaged skin. Previous studies have proved a 3D dynamic simulated microgravity (SMG) culture system as a "stimulatory" environment for the proliferation and differentiation of stem cells. Here, we employed the NASA-approved rotary bioreactor to investigate the proliferation and differentiation of human epidermal stem cells (hEpSCs). hEpSCs were isolated from children foreskins and enriched by collecting epidermal stem cell colonies. Cytodex-3 micro-carriers and hEpSCs were co-cultured in the rotary bioreactor and 6-well dish for 15 days. The result showed that hEpSCs cultured in rotary bioreactor exhibited enhanced proliferation and viability surpassing those cultured in static conditions. Additionally, immunostaining analysis confirmed higher percentage of ki67 positive cells in rotary bioreactor compared with the static culture. In contrast, comparing with static culture, cells in the rotary bioreactor displayed a low expression of involucrin at day 10. Histological analysis revealed that cells cultured in rotary bioreactor aggregated on the micro-carriers and formed multilayer 3D epidermis structures. In conclusion, our research suggests that NASA-approved rotary bioreactor can support the proliferation of hEpSCs and provide a strategy to form multilayer epidermis structure.
皮肤容易受到不同的损伤和疾病的影响。在皮肤组织工程中,一个主要的障碍是如何开发功能性的三维(3D)替代物来修复受损的皮肤。先前的研究已经证明,3D 动态模拟微重力(SMG)培养系统是一种促进干细胞增殖和分化的“刺激”环境。在这里,我们采用 NASA 批准的旋转生物反应器来研究人表皮干细胞(hEpSCs)的增殖和分化。hEpSCs 从儿童包皮中分离出来,并通过收集表皮干细胞集落进行富集。Cytodex-3 微载体和 hEpSCs 在旋转生物反应器和 6 孔板中共同培养 15 天。结果表明,在旋转生物反应器中培养的 hEpSCs 表现出增强的增殖和活力,超过了静态培养的情况。此外,免疫染色分析证实,与静态培养相比,旋转生物反应器中的 ki67 阳性细胞比例更高。相比之下,与静态培养相比,旋转生物反应器中的细胞在第 10 天显示出较低的角蛋白表达。组织学分析显示,在旋转生物反应器中培养的细胞在微载体上聚集并形成多层 3D 表皮结构。总之,我们的研究表明,NASA 批准的旋转生物反应器可以支持 hEpSCs 的增殖,并提供形成多层表皮结构的策略。