Nie Ying, Walsh Patrick, Clarke Diana L, Rowley Jon A, Fellner Thomas
Cell Therapy Development Services, Lonza-Walkersville, Inc., Walkersville, Maryland, United States of America.
PLoS One. 2014 Jan 30;9(1):e88012. doi: 10.1371/journal.pone.0088012. eCollection 2014.
Current laboratory methods used to passage adherent human pluripotent stem cells (hPSCs) are labor intensive, result in reduced cell viability and are incompatible with larger scale production necessary for many clinical applications. To meet the current demand for hPSCs, we have developed a new non-enzymatic passaging method using sodium citrate. Sodium citrate, formulated as a hypertonic solution, gently and efficiently detaches adherent cultures of hPSCs as small multicellular aggregates with minimal manual intervention. These multicellular aggregates are easily and reproducibly recovered in calcium-containing medium, retain a high post-detachment cell viability of 97%±1% and readily attach to fresh substrates. Together, this significantly reduces the time required to expand hPSCs as high quality adherent cultures. Cells subcultured for 25 passages using this novel sodium citrate passaging solution exhibit characteristic hPSC morphology, high levels (>80%) of pluripotency markers OCT4, SSEA-4, TRA-1-60 andTRA-1-81, a normal G-banded karyotype and the ability to differentiate into cells representing all three germ layers, both in vivo and in vitro.
目前用于传代贴壁人类多能干细胞(hPSC)的实验室方法劳动强度大,会导致细胞活力降低,并且与许多临床应用所需的大规模生产不兼容。为了满足当前对hPSC的需求,我们开发了一种使用柠檬酸钠的新型非酶传代方法。配制成高渗溶液的柠檬酸钠,只需极少的人工干预,就能温和且高效地将贴壁的hPSC培养物解离为小的多细胞聚集体。这些多细胞聚集体在含钙培养基中易于且可重复地回收,解离后细胞活力高,可达97%±1%,并且能迅速附着于新鲜底物。总之,这显著减少了将hPSC扩增为高质量贴壁培养物所需的时间。使用这种新型柠檬酸钠传代溶液传代25次的细胞呈现出hPSC的典型形态,多能性标志物OCT4、SSEA-4、TRA-1-60和TRA-1-81的表达水平较高(>80%),具有正常的G带核型,并且在体内和体外均具有分化为代表所有三个胚层细胞的能力。