Brodsky Arthur Nathan, Zhang Jing, Visconti Richard P, Harcum Sarah W
Dept. of Bioengineering, Clemson University, 301 Rhodes Research Center, Clemson, SC, 29634.
Biotechnol Prog. 2013 Sep-Oct;29(5):1298-306. doi: 10.1002/btpr.1782. Epub 2013 Sep 2.
Stem cells are needed for an increasing number of scientific applications, including both fundamental research and clinical disease treatment. To meet this rising demand, improved expansion methods to generate high quantities of high quality stem cells must be developed. Unfortunately, the bicarbonate buffering system - which relies upon an elevated CO2 environment - typically used to maintain pH in stem cell cultures introduces several unnecessary limitations in bioreactor systems. In addition to artificially high dissolved CO2 levels negatively affecting cell growth, but more importantly, the need to sparge CO2 into the system complicates the ability to control culture parameters. This control is especially important for stem cells, whose behavior and phenotype is highly sensitive to changes in culture conditions such as dissolved oxygen and pH. As a first step, this study developed a buffer to support expansion of mesenchymal stem cells (MSC) under an atmospheric CO2 environment in static cultures. MSC expanded under atmospheric CO2 with this buffer achieved equivalent growth rates without adaptation compared to those grown in standard conditions and also maintained a stem cell phenotype, self-renewal properties, and the ability to differentiate into multiple lineages after expansion.
越来越多的科学应用需要干细胞,包括基础研究和临床疾病治疗。为了满足这一不断增长的需求,必须开发出改进的扩增方法,以产生大量高质量的干细胞。不幸的是,通常用于维持干细胞培养物pH值的碳酸氢盐缓冲系统——依赖于升高的二氧化碳环境——在生物反应器系统中引入了几个不必要的限制。除了人为的高溶解二氧化碳水平对细胞生长产生负面影响外,更重要的是,向系统中注入二氧化碳的需要使控制培养参数的能力变得复杂。这种控制对干细胞尤为重要,因为干细胞的行为和表型对培养条件的变化(如溶解氧和pH值)高度敏感。作为第一步,本研究开发了一种缓冲液,以支持间充质干细胞(MSC)在静态培养的大气二氧化碳环境下扩增。与在标准条件下培养的间充质干细胞相比,使用这种缓冲液在大气二氧化碳环境下扩增的间充质干细胞在无需适应的情况下实现了同等的生长速率,并且在扩增后还保持了干细胞表型、自我更新特性以及分化为多个谱系的能力。