Li Yan, Powell Sandra, Brunette Elisa, Lebkowski Jane, Mandalam Ramkumar
Geron Corporation, 230 Constitution Drive, Menlo Park, CA 94025, USA.
Biotechnol Bioeng. 2005 Sep 20;91(6):688-98. doi: 10.1002/bit.20536.
Human embryonic stem cells (hESCs) can serve as an unlimited cell source for cellular transplantation and tissue engineering due to their prolonged proliferation capacity and their unique ability to differentiate into derivatives of all three-germ layers. In order to reliably and safely produce hESCs, use of reagents that are defined, qualified, and preferably derived from a non-animal source is desirable. Traditionally, mouse embryonic fibroblasts (MEFs) have been used as feeder cells to culture undifferentiated hESCs. We recently reported a scalable feeder-free culture system using medium conditioned by MEFs. The base and conditioned medium (CM) still contain unknown bovine and murine-derived components, respectively. In this study, we report the development of a hESC culture system that utilizes a commercially available serum-free medium (SFM) containing human sourced and recombinant proteins supplemented with recombinant growth factor(s) and does not require conditioning with feeder cells. In this system, which employs human laminin coated surface and high concentration of hbFGF, the hESCs maintained undifferentiated hESC morphology and had a twofold increase in expansion compared to hESCs grown in MEF-CM. The hESCs also expressed surface markers SSEA-4 and Tra-1-60 and maintained expression of hTERT, Oct4, and Cripto genes similar to cells cultured in MEF-CM. In addition, hESCs maintained in this culture system were able to differentiate in vitro and in vivo into cells of all three-germ layers. The cells maintained a normal karyotype after prolonged culture in SFM. In summary, this study demonstrates that the hESCs cultured in defined non-conditioned serum-free medium (NC-SFM) supplemented with growth factor(s) retain the characteristics and replicative potential of hESCs. The use of defined culture system with NC-SFM on human laminin simplifies scale-up and allows for reproducible generation of hESCs under defined and controlled conditions that would serve as a starting material for production of hESC derived cells for therapeutic use.
人类胚胎干细胞(hESCs)由于其长期增殖能力以及分化为所有三个胚层衍生物的独特能力,可作为细胞移植和组织工程的无限细胞来源。为了可靠且安全地生产hESCs,使用经过定义、合格且最好源自非动物来源的试剂是理想的。传统上,小鼠胚胎成纤维细胞(MEFs)一直被用作饲养细胞来培养未分化的hESCs。我们最近报道了一种可扩展的无饲养层培养系统,该系统使用由MEFs条件化的培养基。基础培养基和条件培养基(CM)仍然分别含有未知的牛源和鼠源成分。在本研究中,我们报告了一种hESC培养系统的开发,该系统利用一种市售的无血清培养基(SFM),其含有人源和重组蛋白,并补充了重组生长因子,且不需要用饲养细胞进行条件化处理。在这个采用人层粘连蛋白包被表面和高浓度hbFGF的系统中,与在MEF-CM中生长的hESCs相比,hESCs保持了未分化的hESC形态,并且扩增增加了两倍。hESCs还表达表面标志物SSEA-4和Tra-1-60,并维持hTERT、Oct4和Cripto基因的表达,这与在MEF-CM中培养的细胞相似。此外,在该培养系统中维持的hESCs能够在体外和体内分化为所有三个胚层的细胞。在SFM中长时间培养后,细胞保持了正常的核型。总之,本研究表明,在补充了生长因子的定义明确的非条件化无血清培养基(NC-SFM)中培养的hESCs保留了hESCs的特性和复制潜力。在人层粘连蛋白上使用定义明确的NC-SFM培养系统简化了扩大培养,并允许在定义明确和可控的条件下可重复地产生hESCs,这将作为生产用于治疗用途的hESC衍生细胞的起始材料。