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丝裂霉素C制备牛胚胎成纤维细胞饲养层的优化

Optimization of bovine embryonic fibroblast feeder layer prepared by Mitomycin C.

作者信息

Zhao Fang, Yu Jianning, Ding Qiang, Chen Kunlin, Xia Shuwen, Qian Yong, Gao Yundong, Lin Zhiping, Wang Huili, Zhong Jifeng

机构信息

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.

出版信息

Cell Tissue Bank. 2023 Mar;24(1):221-230. doi: 10.1007/s10561-022-10027-3. Epub 2022 Jul 28.

Abstract

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.

摘要

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。

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