Choi Hyerin, Oh Dongjin, Kim Mirae, Jawad Ali, Zheng Haomiao, Cai Lian, Lee Joohyeong, Kim Eunhye, Lee Gabsang, Jang Hyewon, Moon Changjong, Hyun Sang-Hwan
Veterinary Medical Center, College of Veterinary Medicine, Laboratory of Veterinary Embryology and Biotechnology (VETEMBIO), Chungbuk National University, 1 Chungdae-ro, Seowon-gu, Cheongju, Republic of Korea.
Institute of Stem Cell and Regenerative Medicine (ISCRM), Chungbuk National University, Cheongju, Republic of Korea.
Stem Cell Res Ther. 2024 Aug 7;15(1):245. doi: 10.1186/s13287-024-03858-2.
The establishment of stable porcine embryonic stem cells (pESCs) can contribute to basic and biomedical research, including comparative developmental biology, as well as assessing the safety of stem cell-based therapies. Despite these advantages, most pESCs obtained from in vitro blastocysts require complex media and feeder layers, making routine use, genetic modification, and differentiation into specific cell types difficult. We aimed to establish pESCs with a single cell-passage ability, high proliferative potency, and stable in long-term culture from in vitro-derived blastocysts using a simplified serum-free medium.
We evaluated the establishment efficiency of pESCs from in vitro blastocysts using various basal media (DMEM/F10 (1:1), DMEM/F12, and a-MEM) and factors (FGF2, IWR-1, CHIR99021, and WH-4-023). The pluripotency and self-renewal capacity of the established pESCs were analyzed under feeder or feeder-free conditions. Ultimately, we developed a simplified culture medium (FIW) composed of FGF2, IWR-1, and WH-4-023 under serum-free conditions.
The pESC-FIW lines were capable of single-cell passaging with short cell doubling times and expressed the pluripotency markers POU5F1, SOX2, and NANOG, as well as cell surface markers SSEA1, SSEA4, and TRA-1-60. pESC-FIW showed a stable proliferation rate and normal karyotype, even after 50 passages. Transcriptome analysis revealed that pESC-FIW were similar to reported pESC maintained in complex media and showed gastrulating epiblast cell characteristics. pESC-FIW were maintained for multiple passages under feeder-free conditions on fibronectin-coated plates using mTeSR™, a commercial medium used for feeder-free culture, exhibiting characteristics similar to those observed under feeder conditions.
These results indicated that inhibition of WNT and SRC was sufficient to establish pESCs capable of single-cell passaging and feeder-free expansion under serum-free conditions. The easy maintenance of pESCs facilitates their application in gene editing technology for agriculture and biomedicine, as well as lineage commitment studies.
稳定的猪胚胎干细胞(pESCs)的建立有助于基础研究和生物医学研究,包括比较发育生物学以及评估基于干细胞的疗法的安全性。尽管有这些优势,但从体外囊胚获得的大多数pESCs需要复杂的培养基和饲养层,这使得常规使用、基因改造以及分化为特定细胞类型变得困难。我们旨在使用简化的无血清培养基,从体外衍生的囊胚中建立具有单细胞传代能力、高增殖潜能且能长期稳定培养的pESCs。
我们使用各种基础培养基(DMEM/F10(1:1)、DMEM/F12和α-MEM)以及因子(FGF2、IWR-1、CHIR99021和WH-4-023)评估了从体外囊胚建立pESCs的效率。在有饲养层或无饲养层条件下分析所建立的pESCs的多能性和自我更新能力。最终,我们在无血清条件下开发了一种由FGF2、IWR-1和WH-4-023组成的简化培养基(FIW)。
pESC-FIW系能够进行单细胞传代,细胞倍增时间短,并表达多能性标志物POU5F1、SOX2和NANOG,以及细胞表面标志物SSEA1、SSEA4和TRA-1-60。即使经过50次传代,pESC-FIW仍显示出稳定的增殖率和正常的核型。转录组分析表明,pESC-FIW与在复杂培养基中培养的已报道的pESC相似,并表现出原肠胚外胚层细胞特征。使用用于无饲养层培养的商业培养基mTeSR™,pESC-FIW在无饲养层条件下于纤连蛋白包被的平板上进行了多次传代,表现出与在有饲养层条件下观察到的特征相似的特性。
这些结果表明,抑制WNT和SRC足以在无血清条件下建立能够进行单细胞传代和无饲养层扩增的pESCs。pESCs易于维持,这有利于它们在农业和生物医学的基因编辑技术以及谱系定向研究中的应用。