Zhao Fang, Yu Jianning, Ding Qiang, Chen Kunlin, Xia Shuwen, Qian Yong, Gao Yundong, Lin Zhiping, Wang Huili, Zhong Jifeng
Jiangsu Key Laboratory for Food Quality and Safety-State Key Laboratory Cultivation Base, Ministry of Science and Technology / Key Laboratory of Crop and Animal Integrated Farming, Ministry of Agriculture / Institute of Animal Science, Jiangsu Academy of Agricultural Sciences, Nanjing, 210014, Jiangsu, China.
Shandong OX Livestock Breeding Co.,Ltd, Jinan, 250100, Shandong, China.
Cell Tissue Bank. 2023 Mar;24(1):221-230. doi: 10.1007/s10561-022-10027-3. Epub 2022 Jul 28.
Feeder cells play important roles in In-vitro culture of stem cells. However, the preparation protocol of feeder cells produced by bovine embryonic fibroblast cells (bEFs) is still lack. In this study, the preparation of bEF-feeder by Mitomycin C was optimized with different concentrations and treatment time. The cell viability of bEFs was detected by CCK8 and 5-Ethynyl-2'-deoxyuridine. The growth of bESCs in each bEFs-feeder group was assessed by alkaline phosphatase staining and CCK8. Quantitative real time PCR was used to detect the mRNA expression of pluripotency-related genes of bESCs. Results showed that the proliferation of bEFs was significantly repressed while bEFs were treated with 14 ug/mL or 16 ug/mL Mitomycin C for 3 h, and the cell viability within 2-4 days after treatment was consistent with the 1st day. The numbers of bESCs clones in bEF-feeder treated with 14 μg/mL Mitomycin C for 3 h or 16 μg/mL Mitomycin C for 3 h were significantly higher than that in bEF-feeder treated with 8 μg/mL Mitomycin C for 8 h or bEFs treated with 6 μg/mL Mitomycin C for 9 h. The mRNA expression of pluripotency-related genes in bESCs cultured by bEF-feeder were higher than the MEF-feeder, the clone morphology of bESCs cultured in bEF-feeder was rounder and sharper than the MEF-feeder. In conclusion, the bEF-feeder prepared with 14 μg/mL Mitomycin C for 3 h or 16 μg/mL Mitomycin C for 3 h could effectively maintains the growth of bESCs, and bEF-feeder is more suitable for bESCs culture than the MEF-feeder.
饲养层细胞在干细胞的体外培养中发挥着重要作用。然而,由牛胚胎成纤维细胞(bEFs)产生的饲养层细胞的制备方案仍然缺乏。在本研究中,用不同浓度和处理时间对丝裂霉素C制备bEF饲养层进行了优化。通过CCK8和5-乙炔基-2'-脱氧尿苷检测bEFs的细胞活力。通过碱性磷酸酶染色和CCK8评估每个bEFs饲养层组中bESCs的生长情况。采用定量实时PCR检测bESCs多能性相关基因的mRNA表达。结果表明,当bEFs用14μg/mL或16μg/mL丝裂霉素C处理3小时时,其增殖受到显著抑制,且处理后2-4天内的细胞活力与第1天一致。用14μg/mL丝裂霉素C处理3小时或16μg/mL丝裂霉素C处理3小时的bEF饲养层中bESCs克隆数显著高于用8μg/mL丝裂霉素C处理8小时的bEF饲养层或用6μg/mL丝裂霉素C处理9小时的bEFs。bEF饲养层培养的bESCs中多能性相关基因的mRNA表达高于MEF饲养层,bEF饲养层培养的bESCs克隆形态比MEF饲养层更圆更清晰。综上所述,用14μg/mL丝裂霉素C处理3小时或16μg/mL丝裂霉素C处理3小时制备的bEF饲养层能有效维持bESCs的生长,且bEF饲养层比MEF饲养层更适合bESCs培养。